Showing posts with label Energy. Show all posts
Showing posts with label Energy. Show all posts

GU10 Bulbs and Energy Efficiency

A lot of people are concerned about their energy consumption nowadays. Electricity isn't free, and what's more it causes damage to the environment through the burning of fossil fuels. As a result of this desire to reduce energy consumption, more and more people are turning to the latest in lighting technology. LED (or Light Emitting Diode) bulbs are only just making their way onto the consumer market, and are more energy efficient than standard halogen bulbs, reducing the impact on the environment and on your wallet. Some of the newer models with GU10 mounts only need 2 watts to work!

The change is a gradual one - the whole world isn't just going to start using these bulbs overnight - but the more people that start to make the change the better. Though GU10 LED bulbs can cost more than halogen bulbs, they can help you save money in the long run due to their higher energy efficiency, and their longer lifespan. The bulbs are designed specifically to be similar in shape and size to traditional halogen bulbs, so the transition can be made quickly and easily with as little fuss as possible.

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There are a few differences in the kind of light that LED and halogen bulbs produce, e.g. whereas halogen bulbs create a wide ray of light, LED bulbs create more of a focused beam. This makes GU10 LED bulbs ideal for focused lighting, but you have to take the differences into account when making the change. If you can get used to a more concentrated beam of light, make the change, but you may want to keep the wider beam of the halogen bulbs.

GU10 Bulbs and Energy Efficiency

As GU10 LED bulb use is still relatively a novel concept the output of the bulbs is still being improved but at the moment you do need to be aware that if you are looking for a higher light output then you will be required to pay extra for this. However, the extremely long life of LED bulbs will make up for this as you won't need to replace them as often as standard halogen ones. With LED light bulbs the old saying "you get what you pay for" really does apply.

Like standard halogen bulbs, LED light bulbs are available in a range of different colours so that they are useful for use in special purpose lighting. The colour is created by using filters and this actually improves the energy efficiency of the bulbs in comparison to a standard white light. So if you need different coloured lights for a special occasion then LED bulbs really are the way forward!

It is thought that low energy light bulbs such as LED bulbs actually use less than 20% of the energy of a standard halogen bulb and they even last up to 15 times longer. They are also a lot more durable than conventional bulbs as there are no glass tubes or anything to break and the internal parts are all resistant to vibration and impact.

If you are looking to lower your electricity bills and look after the environment at the same time then making the switch over to LED bulbs is a complete no-brainer!

GU10 Bulbs and Energy Efficiency

For more information please visit GU10 Bulbs

Why is Wind Energy a Good Alternative Energy Source?

Wind energy is the best solution to most of our home energy bill problems. Now that there is an ongoing economic crisis and the price of everything is going up, it is highly recommended that we look for alternative energy sources that we can use. This is to cut down cost and help us save money. One of the best solutions is the wind energy.

In addition to helping us lessen our expenses on home energy, it is also environment friendly. Unlike most energy sources that release chemical substances into the atmosphere, wind generators only uses wind power. It has no other byproducts that can damage our atmosphere causing ozone thinning and many other related problems. The only thing that the wind generator will produce is the cheap energy that you can use in to power the appliances in your house.

Energy

However, having wind generators installed by experts may still cost much. For homeowners, it would not make sense if you have to spend thousands of dollars in something that will only reduce your home energy bill by a hundred dollars per month. You would need to use and wait for several years for your investment to pay back.

Why is Wind Energy a Good Alternative Energy Source?

To make this alternative energy source cheaper, you can install it by yourself. This is the reason why many homeowners now prefer to use this energy source. There is now an available guide to help us through the installation process. This systematic guide also has tips to ensure the proper installation of the wind generators. The guide or manual also contains information on the maintenance of the wind generator so that you do not have to contact a technician in case there something is wrong with your generator.

The DIY kit and the manual are much cheaper than the ready-made wind generator allowing you to save money even during the installation of it. All that you have to do is buy the kit, avail the manual and assemble it. Your wind generator will be up and running in no time saving you money from energy expenses. The guide is very easy to understand and includes some schematic plans to ensure that you are putting the right parts in the right position. If you are still having trouble installing the wind generator, you can look for help online.

Before putting up a wind generator, consider the location of your home. If you live in the city and surrounded by tall buildings, of course, wind generators is not applicable for you. As the name of this energy source implies, there should be wind to make it run and tall buildings can obstruct wind in reaching your house. For this, a suggestion is the solar panel as your alternative energy source.

Why is Wind Energy a Good Alternative Energy Source?

If you are interested in making your own wind generator or solar panel at home, click here to learn more.

How to Run Your Appliances More Efficiently to Save Energy and Money

This is the second in a series of Articles that have become The Energy Saver Challenge.  The first article concentrated on helping people save energy and money on their lighting bill.  The focus for now is on how your appliances can cost you unnecessary money, be using energy for which no benefit is derived and how you can do better for the environment and your wallet no matter what your circumstances. 

If you are in the market for a new fridge or freezer, dishwasher or oven or any other appliance for your home, now is the time to make some quality decisions.  It's not all about looks you know, these days it is just as important to select a model that will perform not only in the cooling/washing/looks department but also in the energy use department. 

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Look for a model that has the top energy rating.   A model with a high energy rating can save you a lot of money over the lifetime of the appliance.  Plus, you can know that you have made a choice that is a better deal for the environment too.  Now let's get into some useful detail.

How to Run Your Appliances More Efficiently to Save Energy and Money

Fridges and Freezers:

Did you know that your fridge and freezer account for a large proportion of the energy you use in your house?  The reason for this is they usually run all day and all night, every day of the year.  Learning how to use your fridge and freezer efficiently can make a big difference to how much energy you use.  This is all good news for the environment and for your electricity bill.  Most people are not in the market for a new fridge and there are some important things you can do to improve the performance of your current fridge and freezer.

The first is to give it a bit of a tune-up in terms of it's seals.

Are they airtight?

  • You can check that by putting a piece of paper between the body of the fridge and the door. Shut the door and then tug gently on the paper.  If it comes out easily then your seal is not tight enough and that is costing you money 24/7!  It may be that the door hinges can be adjusted to improve the seal or perhaps it's time to get the seals replaced.
  •  I read recently on an energy company website that an old inefficient refrigerator can use three times as much energy as a new one!  That means it costs you three times as much to run.  If you can check the seal and make that better or replace it, you will certainly benefit.

Many homes have an extra fridge in the garage, basement or even in the shed.  

The party fridge, the beer fridge, the Christmas overflow fridge - whatever it's name at your place, it is costing you money.  Up to 0 a year!  So ask yourself a couple of questions:

  • Is it necessary for this fridge to be turned on all the time or could you just turn it on when it is actually needed?  This will cut your energy consumption and save you a stack of money.
  •  Do your really need the second fridge at all?  I mean, how bad is the refrigeration situation?  Was it a good idea once upon a time and now circumstances have changed? 
  • Perhaps the solution is to sell it to someone who really needs it.

Now we can look at some behavioural changes that can really cut into your energy consumption where the fridge is concerned.

First there is size.

  • Is your fridge the right size for your needs?  We usually have our fridges for a long time, and often we are using a fridge that is no longer optimum for our needs.  I used to own a really big fridge because there were five of us in the house and we needed the room.  Now there are only three of us and we have a medium size fridge however, most of the time we could probably get away with one that was even a little bit smaller. 

Apparently fridges operate most efficiently when they are quite full.  

  • That's the way they like it best.  So if you are looking in the door of your fridge and there isn't much in there and that is the way it usually looks - I can suggest that you are over capacity in the fridge department and it might be worth considering downsizing!

A couple of other tips to help your fridge keep more money in your wallet and create fewer greenhouse gases for the environment.

  • It's best not to locate your fridge or freezer near your oven, or even if it gets sun on it.  Just makes it work harder and you know what that means! 

  • Fridges need space - make sure there is a gap at the back near the ventilation coils so that it can work efficiently.  Around 80mm is recommended.
  •  And last but not least, give the back of the fridge a bit of a dust now and then, this helps the ventilation system too - and you'll be amazed at what makes it way around the back of the fridge when you are not looking.

Dishwashers:

Mine is my husband and my son and I think they both have a 50 star energy rating!   Seriously though, washing dishes in the sink is a good thing and personally I think it's underrated as a family activity. 

Still if you must use a dishwasher think about it's energy rating when you buy it and see how many of these tips you can adopt in it's use.

  • Only run the dishwasher with a full load - it uses the same amount of energy (and water!) whether it's full or half full so it just makes sense to wait until it's full right? 

  • Then don't let the machine dry the dishes for you - program it to stop before the drying cycle and just open the door - the dishes will dry themselves without any extra energy needed at all.

Your stove or oven:

Once again if you are buying new, go for the highest energy rated appliance you can afford - it will keep saving you money for the whole of its life.

One big tip is to only use your oven when you actually need to.

  • Frying pans, pressure cookers and crock pots and even microwave ovens are more energy efficient if what you are cooking can be created in them. 
  • If you are going to use your oven, check that the door closes fully and that there is a good seal when it is closed.  No point in paying for all that energy to warm it up if it is just going to escape out around the door. 
  • This applies equally to electric or gas ovens. 

Now to the cook top.

  • Did you know that just putting the lid on the pot will substantially lessen the amount of energy required to cook what is in it? 
  • Plus, if you ensure that the right pot goes on the right hotplate or burner (not too big, or small) then you will also save substantially in both energy and time.  Not to mention the money!

So how can you save energy in the laundry? 

That washing machine now gets the energy efficiency treatment.  You know the deal by now with the energy rating if you are in the market for new appliances right?  I know you have a good idea of what to look for now. 

The first tip is to wash in cold water.

  • I've not washed in hot or warm water for decades and I'd love to know how much energy and money that has saved me.  I also recently had to buy a new machine and went for one of those front loading varieties.  I have to say, I like it very much and it uses less water and less energy than an equivalent top loading machine so it appears I have made a good decision with that one. 
  • As with the dishwasher, you will discover that your washing machine will use the same amount of energy whether or not there are a few items or a whole load so it makes sense really to wait until you have a full load of washing if you are trying to save energy and thus have more money in your pocket at the end of the month. 

Now, the bane of my life, clothes dryers.

I was given one as a wedding gift and I had it for about 15 years before it finally coughed it's last load of soft fluffy clothes at me.  However, I had used it less and less as I realised just how much money it cost me each time I used it.  Eventually for the last three or four years it only got used in emergencies of weather or bad management on my part.

  • If it is a sunny day, hang your washing outside.  I have a clothes line but I know others who use clothes airers and they work well too.  The sun dries them perfectly, the breeze softens the fabrics and they smell fantastic when you bring them back inside. 

  • If you do use your dryer, never put dripping clothes in, always spin them first and make sure the lint filter is cleaned really regularly so that the machine can weave its magic for you as efficiently as possible. 

  • Maybe you could trial drying your clothes and just finishing them off in the dryer as an interim measure on a wonderfully sunny day.

There are many other energy using appliances in our home that you may not have thought of.

Things like your iron, your microwave, your television, computer, dvd/video machine, stereo,gaming consoles.....  How on earth did we come to rely on energy so much for our daily lives. 

Most of these appliances now contain digital clocks and also standby lights.  Now this is all very well but how many clocks does one room need?  In my home, in the kitchen I have a clock on the wall, one on the stove and another on the microwave.  In the living room I think at last count there were four clocks in the TV cabinet!  What is this obsession with clocks on appliances? 

Now to get to the point.  I'll give you an everyday example as a means to make it - the microwave oven.  Most if not all homes now possess such an appliance.  They almost all come with a digital display that tells you all sorts of useful information like temperature and duration of cooking time while you are using them and that is great but once their job is done, they just sit there with their little display telling you the time. And using energy. 

  • I use my microwave for less than 30 minutes a day and yet I allow it to use energy (and cost me money) for 24 hours per day.  That just does not make sense. 
  • Turn it off at the switch when you are not using it. 
  • It will not mind, it will not stop working. 
  • Nothing terrible will happen.

The same goes for your stereo. 

  • If you are not listening to it, turn it of. 
  • Not just on the front, that will just let it sit there on standby mode, using power. 
  • Turn it off at the switch.

And when you go to bed at night, all those things in the entertainment cabinet with their little red and green lights just begging you to turn them back on, are costing you money.  Don't listen, reach behind the cabinet and flick that switch!

Now here is the big sell for me about this one.

All those clocks, all those little red and green standby lights (including the ones on your computer!) add around 10% to your energy bill.  That means by creating the habit of turning them off when they are not being used, you could save up to 10% on each and every energy account you receive from this day forward.  Over your lifetime, that can add up to a lot of energy and a nice amount of money left in your bank account for something much more fun than paying the energy bill.

How to Run Your Appliances More Efficiently to Save Energy and Money

Cate Ferguson lives in Australia and has been involved in the Personal Growth and Empowerment field for many years. Cate Ferguson produces a monthly newsletter and is the author of a 5 part ecourse 5 Steps to Discover your life purpose. Visit http://www.CateFerguson.com for more information

Cate is also passionate about living a sustainable lifestyle and has written extensively on how to live a modern, mainstream alternative lifestyle. Visit http://www.AlternativeLifestyleSite.com/blog for more information

5 Ways to Save Energy at Home

The world is facing an energy crisis and we all want to do our part to help conserve what we can. Not only will you help the environment but you will also be able to save money. So here are 5 quick methods you can use to conserve energy at home.

1. Light Bulbs - Switch to CFLs or compact fluorescent light bulbs. The right CFL uses about 75% less energy and lasts up to 10 times longer. Additionally, they save about %2B in electricity costs over the lifetime of the bulb and produces 75% less heat. Although they cost a little more per light bulb, the long term savings are worth the purchase.

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2. Air Conditioner - Set the temp between 78 to 82 degrees depending on your comfort level and you will see a significant savings. Depending on the season, setting the thermostat too low will make the air conditioning unit run continuously or more often and setting the temperature too high will cause the unit to run longer to bring the temperature of the house down.

5 Ways to Save Energy at Home

3. Washing Machines - Washing machines and dryers account for about 10% of overall energy usage. Try to use cold water for wash and rinse. Run large loads instead of several small ones and if you can, try to get front-load washers since they use up to 2/3 less energy.

4. Electric Appliances - Unplug anything electric that is not in use. You'd be surprised how much you can save by simply unplugging your appliances.

5. Computer - It seems a lot of people leave their computers on. Do yourself a favor and turn off the computer and turn off your monitor when you are done using it.

5 Ways to Save Energy at Home

Learn another method of conservation through a DIY Solar Power System. Learn how to build your own solar power or wind power system. Go to [http://www.diysolarpanel.net]

Energy Saving Using Variable Speed Drives - Explanation of How to Save Energy Using Drives

Energy Saving - An introduction

Many systems use constant speed motors and control process flow rates or pressures by mechanically regulation using throttling valves, dampers, fluid couplings or variable inlet vanes etc. These devices generally do not control flow or pressure efficiently because energy is dissipated across the throttling device.

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Running a motor at full speed while throttling the input or output is like driving a car with one foot on the accelerator and the other on the brake; a part of the produced output immediately goes to waste.

Energy Saving Using Variable Speed Drives - Explanation of How to Save Energy Using Drives

A variable speed drive can save over 60% of the energy. This is possible as it controls the energy at source, only using as much as is necessary to run the motor with the required speed and torque - much in the same way as the accelerator in the car controls the engine revs and without the foot on the brake. Types of loads - which are suitable for energy saving?

Drive applications are categorized with respect to power and torque changes in response to the motors speed. It is important to understand the type of load for a particular application because not all are equally good energy saving opportunities for the application of a variable speed drive. In fact, if a variable speed drive is used on some loads there will be little or no energy savings.

Variable speed drives and the loads they are applied to can generally be divided into 3 groups:

- Constant power
- Constant torque
- Variable torque

Constant Power Loads

In constant power applications, the power requirement remains constant at all speeds, and the torque requirement varies inversely with speed. One example of this type of load would be a lathe. At low speeds, the machinist takes heavy cuts, using high levels of torque. At high speeds, the operator makes finishing passes that require much less torque. Other examples are drilling and milling machines.

Typically, these applications offer no energy savings at reduced speeds.

Constant Torque Loads

In constant torque loads, the power is directly proportional to the operating speed. Since torque is not a function of speed, it remains constant while the power and speed vary proportionately. Typical examples of constant torque applications include conveyors, extruders, mixers and positive displacement pumps. Usually these applications result in moderate energy savings at lower speeds.

In variable torque load applications, both torque and power change with speed. Torque varies with speed squared, and power varies with speed cubed. This means that at half speed, the power required is approximately one eighth of rated maximum. Common examples of variable torque loads are centrifugal fans, blowers and variable discharge pressure pumps.

The use of a variable speed drive with a variable torque load often returns significant energy savings. In these applications the drive can be used to maintain various process flows or pressures while minimizing power consumption. In addition, a drive also offers the benefits of increased process control, which often improves product quality and reduces scrap.

Effective speed ranges are from 50% to 100% of maximum speed and can result in substantial energy savings.

How do variable speed drives achieve energy saving with variable torque loads?

Variable speed drives regulate the speed of motors and in turn the speed of the fan or pump by controlling the energy that goes into the motor rather than restricting the flow of a process running constantly at full speed.

A variable speed drive can save over 60% of the energy as it controls the energy at source, only using as much as is necessary to run the motor with the minimum speed and torque.

Large amounts of energy can be saved on fan and pump systems, because of the affinity laws for pressure and flow rates.

The Affinity laws state -Flow is directly proportional to speed Torque is directly proportional to speed squared Power required is proportional to speed cubed Therefore, this means that if 100% flow requires full power 75% flow requires 0.753= 42% of full power 50% flow requires 0.53= 12.5% of the power

Mechanical control methods such as inlet guide vanes, throttling valves, discharge dampers do not take advantage of the affinity laws.

With mechanical flow control methods the motor always runs at full speed and the flow is mechanically restricted.

A variable speed drive saves energy by reducing the actual speed of the motor when full flow is not required.

Example A fan is running at fixed speed (50Hz) and the output from the fan is restricted by a discharge damper to restrict airflow to the correct level for the process. The input power is typically 95% of full load power.

A variable speed drive is fitted to the system and the discharge damper removed so there is no restriction to airflow. The speed of the motor is reduced to 40Hz which gives the same airflow as before when the motor was run at full speed and a discharge damper used. Now the input power is typically 50% of full load power.

Therefore by using a variable speed drive, the power being consumed is reduced by typically 45%.

Centrifugal Fans Massive potential energy savings using a variable speed drive compared to the two most common methods of flow control for fans: - Inlet guide vanes require about 60% power to give a flow rate of 50% - A discharge damper requires a huge 90% power to give 50% flow

Centrifugal Pumps - Operating at 75% flow requires less than 50% power, whilst the throttling valve requires around 90% power.

Centrifugal fan - Typical input powers

The following table shows the typical input power to a motor when run at full speed with flow rate is restricted by an outlet damper compared to the typical input power when the same motor is run at reduced speed from a variable speed drive, achieving the same air flow rate as with the outlet damper. It can be seen that if an outlet damper reducing the air flow rate to 80% uses 95% input power, a variable speed drive achieving the same air flow rate uses 50% input power.

Other advantages of variable speed drives

o A variable speed drive can also make it possible to stop a motor completely when it is not required as re-starting with a variable speed drive causes far less stress than starting direct on line - soft start is an inherent feature of the drive.
o Regulating the motor speed has the added benefit of easily accommodating capacity rises without extra investment, as speed increases of 5-20% is no problem with an AC variable speed drive as long as there is enough spare capacity in the system.
o Reduced maintenance compared to DC systems (brushes and commutators)
o Reduced motor/application noise levels.
o If the variable speed drive has an internal PID loop, it will be possible to automatically control flow or pressure based on feedback from a sensor within the system. This can make further energy savings as the motor can slow right down if very little flow or pressure is required.

Another method of saving energy

Most companies forget about the motors when considering energy saving. As well as saving money by installing a variable speed drive, installing high efficiency motors can also save energy and money. Please see the enclosed document for further details on high efficiency motors. Motor Control Warehouse can supply EFF1 accredited motors. Please take a look at our website for further details.

Example of energy saving using a variable speed drive

A 30kW pump operating for 16 hours during weekdays and 12 hours during week ends, total of hours per week = 92 hours.

Energy Cost at constant speed Energy consumption per week - 30kW x 92hours = 2760kWh Assume electricity rate is 10p per kWh Energy cost per year - 2760kWh x £0.10 x 52 weeks = £14352

Energy Cost at variable speed Assume average speed is 75% which corresponds to 42% power consumption Energy consumption per week - 0.42 x 30kW x 92 hours = 1159.2kWh Energy cost per year - 1159.2kWh x £0.10 x 52 = £6027.84 Value of energy saved per annum by using a variable speed drive £14352 - £6027.84 = £8324.16

NOTE: This calculation is just an example using a figure of 10p/kWh but gives a good guide as to what can be saved by using variable speed drives. For a more accurate value of possible energy savings, a full survey including tests would be required

Energy Saving Using Variable Speed Drives - Explanation of How to Save Energy Using Drives

Largest supplier of AC/DC Inverters, Motors, Servo Variable Speed Drives, EMC Filters, and more! We have 75 years of experience and provide next day shipping on all orders.

Residential Wind Turbines - Save Money, Save Energy, Save the Environment

Money, energy saving, and the environment are three issues that concern many people in the world, and they are all tied together. Rising oil and coal prices lead to higher electricity prices, which lead to the general will to save energy which will also save the environment. Unfortunately, it is not easy to accomplish all these tasks together without doing anything. But when doing something, like installing wind turbines, devices that produce energy from the wind, it all becomes easy.

The rising electricity bill is a big concern these days with expensive oil. Fortunately, wind turbines do not require any oil or other fuel to operate, and they generate free electricity. Since the energy from wind turbines powers your home appliances, you need less electricity from the electric company. As a result, you electricity bill shrinks. If you have enough wind turbines to produce more electricity than you consume, you can sell it to the electric company and get paid for it. Your wallet will be happy.

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Energy saving and green thinking is a major point of many companies today. Most appliances have an efficiency rating, so you can choose the one that gives the most work for the electricity invested. However, this is still not enough to be independent from electric companies. Wind turbines generate electricity for you, so you save much more energy from oil and coal.

Residential Wind Turbines - Save Money, Save Energy, Save the Environment

Environmentalists like to complain about the pollution from electric companies, and they are right. Electricity generation is a very polluting process. However, the use of wind turbines is completely pollution free. Not a single molecule of carbon dioxide or any other polluting substance will be released in the process. You save money, you save energy, and you save the environment.

Residential Wind Turbines - Save Money, Save Energy, Save the Environment

To start using wind turbines and saving, download Earth4Energy, the detailed guide that will show you how to properly install your very own home wind turbine system.

About the author:

Nadav Snir is a chemistry and physics student who studies energy and ways of conservation. To find out more about energy saving, wind turbines, and Earth4Energy, visit his site: http://Great-Info-Products.com/WaterForGas/earth4energy.html

Energy Efficiency And HVAC Technology

The following overview offers a quick reference to key considerations with some of the most effective technologies. As with lighting, trial installations are a good idea; so is working with manufacturers and distributors.

Getting the most from HVAC controls

\"Energy Efficiency\"

Because a building's performance can be dramatically improved by installing and fully using HVAC controls, it is essential to understand and correctly use those controls. The place to start is with a close look at what is really transpiring in your building, 24 hours a day, seven days a week.

Energy Efficiency And HVAC Technology

What is happening with each piece of equipment? On holidays? Weekends? As the seasons change, do your operations change? It is important to understand where and how energy is being consumed in order to identify where waste is occurring and where improvements can be implemented. Then it is imperative to ask, "What exactly do I want these controls to do?"

Energy management systems (EMS) are designed to run individual pieces of equipment more efficiently and to permit integration of equipment, enhancing performance of the system. In a typical EMS, sensors monitor parameters such as air and water temperatures, pressures, humidity levels, flow rates, and power consumption. From those performance points, electrical and mechanical equipment run times and setpoints are controlled.

Seven-day scheduling provides hour-to-hour and day-to-day control of HVAC and lighting systems and can account for holidays and seasonal changes. As the name implies, night temperature setback allows for less cooling in summer and less heating in winter during unoccupied hours.

Optimal start/stop enables the entire system to look ahead several hours and, relative to current conditions, make decisions about how to proceed; this allows the system to ramp up slowly, avoiding morning demand spikes or unnecessary run times.

Peak electrical demand can be controlled by sequencing fans and pumps to start up one by one rather than all at once and by shutting off pieces of HVAC equipment for short periods (up to 30 minutes), which should only minimally affect space temperature. Economizers reduce cooling costs by taking advantage of cool outdoor air. Supply-air temperature-reset can prevent excessive reheat and help reduce chiller load.

An EMS can provide an abundance of information about building performance, but someone has to figure out what they want the EMS to do and then give it directions. Calibrating controls, testing and balancing are key to any well-maintained HVAC system, but are especially critical to optimize control efforts.

Variable speed drives and energy-efficient motors

Variable speed drives (VSDs) are nearly always recommended as a reliable and cost-effective upgrade.

VSDs are profitable where equipment is oversized or frequently operates at part-load conditions. Savings of up to 70 percent can be achieved by installing VSDs on fan motors operating at part-load conditions. They may be applied to compressor or pump motors and are generally used in variable air volume (VAV) systems. They are also cost effective in water-side applications. Backward-inclined and airfoiled fans are the best VSD candidates.

Air-handler configurations controlled by variable inlet vanes or outlet dampers squander energy at part-load conditions. Using throttle valves to reduce flow for smaller pumping loads is also inefficient. The efficiency of motors begins to drop off steeply when they run at less than 75 percent of full load; they can consume over twice as much power as the load requires. VSDs operate electronically and continually adjust motor speed to match load.

The power to run the VSD is proportional to the cube of the speed (or flow), which is why this technology is so efficient. If the speed is reduced by just 10 percent, a 27 percent drop in power consumption should result. A VSD pilot study performed by EPA found that VSD retrofits realized an annual average energy savings of 52 percent, an average demand savings of 27 percent and a 2.5-year simple payback.

Perform harmonic, power factor, electric load, and torsional analyses before selecting a VSD. Though harmonic and power factor problems are not common in VSD applications, VSDs should generally be equipped with integral harmonic filters (or a three-phase AC line reactor) and internal power factor correction capacitors (or a single capacitor on the VSDs' main power line). In general, this equipment is not standard and must be specified.

Improved design and better materials enhance the performance of energy-efficient motors, which use 3 to 8 percent less energy than standard motors; units with efficiencies of 95 percent are available.

To achieve maximum savings, the motor must also be properly matched with its load, increasing run time at peak efficiency. Motors operate best when running at 75 to 100 percent of their fully rated load; motors routinely operating below 60 percent of rated capacity are prime candidates for retrofit. For motors whose loads fluctuate, VSDs should also be considered.

Smaller, more efficient motors are integral to a system downsizing stratagem; downsizing a 75 horsepower standard motor to a 40 horsepower energy-efficient model will result in energy savings of 15 percent.

Some energy-efficient motors have less "slip" than standard-efficiency motors, causing energy-efficient motors to run at slightly higher speeds; consider a larger pulley to compensate for the higher speed and to maximize energy savings. Installing a new pulley or adjusting the existing one can also be an alternative to a VSD when the cost for the VSD is prohibitive or the load has been reduced.

Improving fan system performance

A common way to improve the efficiency of the air distribution system is to convert constant air volume (CAV) systems to VAV. One authority on energy issues, E-Source, reports that "typical (VAV) air flow requirements are only about 60 percent of full CAV flow."

VAVs respond to load requirements by varying the volume of the air through a combination of pressure controls and dampers rather than by varying the air's temperature. According to the air pressure, fan power and volume of conditioned air are reduced, thus increasing energy efficiency. Of course, it is crucial to maintain indoor air quality (IAQ) when altering air handling systems.

To maximize savings, VAV components such as VSDs, variable-pitch fan blades, diffusers, mixers, and VAV boxes must be operating properly; careful zoning is also required to achieve VAV optimization.

E-Source recommends considering the following VAV retrofit procedures:

• complete load reduction measures and calculate the maximum and minimum air flow requirements,
• measure existing fan performance; examine duct system for possible improvements,
• stage fans that are in parallel configurations,
• commission the system thoroughly,
• optimize static pressure setpoint and implement reset control, and
• possibly remove return air fans.

Energy-efficient and properly sized motors are also recommended along with careful control strategies. Installing a self-contained, thermally powered device to each diffuser can add greater control to VAV systems by controlling individual spaces, rather than entire zones, and eliminate the need for VAV boxes. Such a device also offers VAV-style capabilities to CAV systems.

VAV retrofit costs and paybacks can vary widely. Installation problems related to fan control, reduced supply air distribution, location of pressure sensors and their reliability, in addition to deficient design, can diminish a VAV retrofit's performance. Because VAV boxes are relatively expensive and one is required for each zone, it is generally not cost effective to partition the space into many zones. Careful zone designation -- according to occupancy, internal loads and solar gain -- will maximize efficiency, increase comfort and reduce reheat.

When reheat cannot be eliminated, consider these steps to minimize it: ensuring thermostat calibration; increasing supply air temperatures during the cooling season; and monitoring reheat year round and possibly employing reheat only during winter months. Where reheat is used primarily to control humidity, a desiccant wheel or a heat pipe might be considered.

Downsizing existing VAV fan systems is a relatively low-cost way to save energy when loads have been reduced or when the air distribution system was oversized to begin with. The following are means to downsize fans or airflow requirements:

• Reduce static pressure setpoint to meet actual temperature and airflow requirements.
• Rightsize motors and upgrade to energy-efficient models; install larger pulleys.
• Replace the existing fan pulley with a larger one; that will reduce the fan's power requirements by reducing its speed.
• Make sure the fan's speed corresponds to the load. Reducing a fan's speed by 20 percent reduces its energy consumption by approximately 50 percent.

There are several ways to determine if VAV fan systems are oversized. If a motor's measured amperage is 25 percent less than its nameplate rating, it is oversized. If a fan's inlet vanes or outlet dampers are closed more than 20 percent, it is oversized. If the static pressure reading is less than the static pressure setpoint when inlets or dampers are open and VAV boxes open 100 percent, as on a hot summer day, the system is oversized. Again, be sure to consider IAQ requirements when downsizing air handling systems.

Chillers and thermal storage

No one wants to replace a perfectly good chiller just because of the CFC phaseout. But once load-reducing efficiency upgrades have been completed, it may actually be profitable to replace an oversized chiller. That's especially true given rising prices and tightening supplies of CFC refrigerants.

Oversized units 10 years or older are good candidates for replacement. A high-efficiency chiller reduces energy costs throughout its lifetime; initial costs are reduced because the replacement chiller is smaller than the old one. Depending on the old unit's efficiency and load, a high-efficiency chiller's energy consumption can be.15 to.30 kW/ton less, decreasing energy consumption by as much as 85 percent if combined with downsizing.

An alternative to replacement is to retrofit chillers to accommodate a new refrigerant and to match reduced loads. That may involve orifice plate replacement, impeller replacement and possibly compressor replacement, depending on the chiller's specifics.

Retrofitting may entail gasket and seal replacement and motor rewinding. Depending on the refrigerant and the way the retrofit is performed, the chiller may lose either efficiency or capacity. To determine whether replacement or retrofit is a better option, consider both initial and life-cycle costs.

Retubing the condenser and evaporator yields sizable energy savings but whether it makes sense, given its high cost, depends on the condition of the chiller. Water-cooled condensers are generally more efficient than air-cooled units. Because condenser water flows through an open loop, it is susceptible to fouling. Scale build-up will inhibit heat transfer efficiency; maintenance is therefore required to keep the surfaces clean.

Absorption chillers are an alternative to centrifugal models. Absorption chillers cost up to 0 per ton more than vapor compression chillers like centrifugal units, but can be profitable in areas of high electrical demand charges or where steam or gas is available, depending on the local utility rate structures. Using a combination of the two chiller types can reduce electrical demand charges.

Thermal energy storage (TES) uses conventional chiller equipment to produce conditioned water or ice (or occasionally another phase-change material) in off-peak periods. Water is withdrawn from storage during the day or at peak hours and circulated through the cooling system.

TES systems can be incorporated into new and existing systems and can provide partial load leveling or full load shifting. TES helps decrease operating and maintenance costs; in some cases, a smaller chiller can be specified. Some systems provide lower supply air and water temperatures, so air and water flow requirements can be cut.

Water-side improvements

Fill material, size and fan configurations affect cooling tower efficiency. Cellular fill (aka film packing) increases efficiency over other fill types. Oversizing the tower to allow for closer approach to ambient wetbulb temperature can improve its efficiency. Generously sizing the tower and increasing its share of the chiller load can make economic sense because a cooling tower's initial cost and energy use per ton are less than a chiller's.

At part-load conditions, applying a VSD to the fan (or pump) will improve the tower's efficiency. Systems with VSDs and several fans are more efficient when all tower cells are operating at reduced speed as opposed to one or two cells at full speed.

Because cooling towers contain large heat exchange surfaces, fouling -- scale or slime build-up -- can be a problem. The efficiency of improperly treated systems can be improved with effective water treatment. High-efficiency towers are available; induced-draft types are more popular and efficient than forced-draft towers. Performance can also be improved by increasing cooling surface area.

In traditional pumping systems, flow is generally constant volume; a throttle valve reduces flow at part-load conditions, inhibiting efficiency.

Installing VSDs on secondary pumps in variable flow systems, rightsizing pumps and motors to meet load requirements, and upgrading single loop systems to primary/secondary loop configurations can increase the performance and reliability of pumping systems. In upgrading chilled water pumps, it is important to meet maximum and minimum flow rates through the chiller.

Other cooling options

Desiccants are dehumidification materials which can be integrated into HVAC systems to reduce cooling loads and increase chiller efficiency while improving indoor air quality and comfort. Formerly found only in niche and industrial applications, desiccant cooling is extending throughout commercial markets.

Desiccants make sense when the cost to regenerate them is low compared to the cost to dehumidify below dewpoint and can reduce HVAC energy and peak demand by more than 50 percent in some cases.

Evaporative coolers provide one of the most economical and efficient means of cooling, using up to 75 percent less energy than vapor-compression systems. Though initial cost is typically higher, paybacks for evaporative coolers range between six months and five years. Though evaporative coolers are particularly prevalent in the arid West and Southwest, they can service most U.S. climates. E-Source states that, in combination with evaporative cooling, desiccant cooling can eliminate refrigerative air conditioning in many climates.

Hybrid systems that integrate evaporative cooling with conventional HVAC technologies offer additional opportunities. To improve performance consider lower air velocity; better fill materials; higher fan, pump and motor efficiencies, including VSDs; better belts or direct drive; improved housing; improved controls; and duct sealing. Proper maintenance is key to energy-efficiency.

Packaged air-conditioning units are typically found in buildings or building zones where the cooling load is less than 75 tons. Running these units at part load can severely reduce efficiency. They are generally not as efficient as chiller systems but can be upgraded and rightsized when replaced. Existing systems can be improved by using higher efficiency compressors, larger condensers and evaporators, and VSDs, though life expectancies of 10 to 12 years for these technologies may mean that retrofits are not cost-effective.

Heat pumps are among the most energy-efficient heating and cooling technologies available today. Low operating costs, increased reliability and long life expectancies improve their viability. They function best in moderate climates and proper sizing is critical.

Multi-unit configurations can service larger loads and provide zoning; large, modernized central units offering capacities of up to 1000 horsepower or 750 kilowatts are gaining popularity. Air-to-air type heat pumps are the most common because of low up-front costs; ground supply heat pumps are the most efficient but tend to have higher initial costs.

Boiler upgrades

Especially in colder climates, improved boiler performance -- with improved fuel and airflow controls over a range of load conditions and increased heat transfer surface areas -- can contribute substantially to energy savings. Smaller units arranged in modular systems increase efficiency up to 85 percent while small units replacing those with open-loop condensing systems shoot combustion efficiency up to 95 percent.

Boiler retrofits, combined with improved maintenance measures, can also increase efficiency -- up to 90 percent. New burners, baffle inserts, combustion controls, warm-weather controls, economizers, blowdown heat recovery and condensate return conversions provide increased efficiency opportunities. A smaller "summer" boiler might be a good option when a boiler is required year round though at reduced capacities in warmer conditions. The much smaller summer boiler is sized for reduced loads; the main boiler is shut down.

HVAC upgrades can provide tremendous economic benefits, improve occupant comfort and system reliability, and reduce operating costs. But to maximize benefits and minimize capital investment, load-reducing measures, such as lighting upgrades, should precede HVAC system upgrades.

Energy Efficiency And HVAC Technology

Julian Arhire is a Manager with DtiCorp.com - DtiCorp.com carries more than 35,000 HVAC products, including industrial, commercial and residential parts and equipment from Honeywell, Johnson Contols, Robertshaw, Jandy, Grundfos, Armstrong and more.

The Three Little Pigs Story - Wise Building Materials and Energy Efficiency Considered

Not long ago, a friend of mine use the three-little pigs story in a blog post. Since, we all know the story, I will not repeat it, but do recall that the wolf blew over the first two little pigs homes and ate the pigs. The third pig made his home of bricks, thus the wolf could not blow it over. Later in the story the wolf tried to come down the chimney and he falls into boiling water instead of getting dinner.

In this story the Pig boils water to kill the Wolf in the choke point of the chimney, that takes energy, quite a bit of it. It takes a whole lot of energy to boil water. Now then, is this the true and efficient energy model of a prudent pig or is he an energy hog? You see, had the third pig used a solar collector to heat the water, bringing the water to boiling may have only taken a little extra energy rather than all the energy to bring the water from room temp to boiling.

\"Energy Efficiency\"

The pig waited until there was a crisis then used the most inefficient form of energy to boil the water in the chimney, he used wood, Natural gas is more efficient and you do not have to cut down the forest to do it either. I think we can show this as a bad example of energy use. There are easier ways to kill a wolf, and shouldn't that wolf have become dinner, why waste a perfectly good wolf.

The Three Little Pigs Story - Wise Building Materials and Energy Efficiency Considered

Further the two pigs who did parish along with their houses offer another opportunity - recycle-able materials - Why waste those materials, as they might provide decent insulation material?

Those who proclaim to be environmentalists are often hypocrites, because they would have attacked the third pig for using brick, as brick takes energy to make, transport, requires mining of materials and lots of water to be used (most brick making), it is a messy process. The finished brick home is deadly in an earthquake which could have crushed the pig and his piglets at a future date, through the law of unintended consequences of a black swan event in an area not known for seismic disruptions.

So, the environmentalists and their movement would have sued and prevented the EIR for the pig to build the brick house in the first place, if the pig built it anyway then the government would have torn it down for the wolf. Thus, the pig would have been eaten along with his brothers. Consider this.

The Three Little Pigs Story - Wise Building Materials and Energy Efficiency Considered

"Lance Winslow" - Online Blog Content Service. If you have innovative thoughts and unique perspectives, come think with Lance; www.WorldThinkTank.net/.

How a Magnetic Energy Motor Generates Never Ending Energy to Power Your Home - Energy Efficiency

If you are considering using alternative energy sources to power your home, then you might be interested in magnetic energy motors. A magnetic energy motor is similar to wind turbines and solar panel systems because they generate free energy. However, once you learn how it works you will see the differences.

These motors will generate electricity for your home using magnetic fields. The amount of energy a magnetic energy motor generates depends on the strength of the magnets being used. The stronger the magnets used for the motor, the more energy will be created by the motor.

\"Energy Efficiency\"

Moreover, this motor will use the energy it has produced to power itself. This means you won't have to worry about whether or not you have enough wind or sunlight to support your home energy system.

How a Magnetic Energy Motor Generates Never Ending Energy to Power Your Home - Energy Efficiency

These motors operate on the principle that opposite magnets attract, meanwhile, if they are similar they will repel. Magnetic energy will be created when the magnetic forces push against each other in the motor. The more these magnetic forces push, the more energy will be created until the magnets are removed.

Someone would have to strip the motor of it's magnets in order for it to stop producing energy. These motors use perpetual motion to produce never ending energy, and as long as the magnets inside the motor repel and attract naturally it will continue to do so.

There is no harmful emissions when you use a magnetic energy motor, making it very environmentally friendly. Also, when you use magnetic fields for producing energy for your home you don't have to worry about any excess heat being generated.

At the end of the day, when more people understand how a magnetic energy motor works solar and wind home energy devices will have a big competition.

How a Magnetic Energy Motor Generates Never Ending Energy to Power Your Home - Energy Efficiency

If you decide to implement one of these motors on a full-scale, it will independently power your household, meaning, you won't have to pay anything to the power company. Click Here and take a look at how you can begin producing free energy using one of these motors, also known as a Permanent Magnet Generator.

Reducing Heat Losses Through Energy Efficient Window Coverings

If your windows are ancient and aren't doing a passable job of keeping the warm air inside your house in cold weather (or keeping it out in warm weather), it might be time to consider having new, energy saving windows put in. But new windows, especially good quality energy saving ones, can be very expensive. As a result, their payback period can be quite long. For the amount of cash you would pay to redo the windows in a single big room, you can get almost the same energy efficiency with some basic weather stripping and by using energy efficient window coverings to eliminate heat transfer between your home and the out of doors.

Let's first look at how windows help keep the cold out in winter, and the hot air out in summer. Windows block heat transfer in three ways: convection, conduction, and radiation.

\"Energy Efficiency\"

Windows eliminate or reduce the convection airflow between the inside and outside, blocking heat from passing through the window along with the airflow. A leaky window, or one with cracked glass or broken putty, allows air through these gaps, so heat gets out in winter, and heat leaks in during the summer.

Reducing Heat Losses Through Energy Efficient Window Coverings

Even a very thin sheet of glass has some insulating properties, but if the glass is double-glazed and the space between the panes is an inert gas such as argon, the panes provide extra insulating value, which reduces heat transfer through conduction. Conduction is what causes the metal handles of a pot to heat up when you boil water in the pot; so you can guess that a metal window frame, if not properly built, can conduct a lot of heat. While you can't easily add extra glass sheets to a window, there are other techniques to create additional still air spaces between the window glass and the room, which will add insulation and reduce conduction losses.

Radiation, the third type of heat transfer, usually occurs when light in the infrared spectrum passes through windows, heating the air inside, or when heat inside the room radiates out through the glass. Home energy auditors sometimes take infrared photographs of a home to show where heat losses are most significant, and windows are typically one of the largest sources of heat escaping from houses in winter.

How does this knowledge about heat transfer through convection, conduction, and radiation help you cut energy losses through your windows?

The first problem to address is convection. If your windows have cracked panes, get them repaired. If you still have the old wood-framed windows with putty holding the glass in, inspect the pane for any peeling or missing putty. It's fairly easy to pull old putty out with a putty knife and put a fresh layer of putty on in its place. If the wood of the window itself is broken, or if the glass is hard to get out for replacing, you may not be able to put off getting new windows, but if you can cut the small air leaks, you'll have gone a long way towards minimizing energy losses and should feel some relief in your utility bills.

You may be surprised to learn how much heat can travel out of a home in cold weather through the wood trim around a window. Just wait for a really cold day, put all the exhaust fans on in your house( kitchen range vent, bathroom exhaust fans, etc.), and run your hand along the edges of window and exterior door trim on the inside of rooms. Anywhere you feel cold air coming in, you have a draft that should be sealed. It won't hurt to run a thin bead of clear or white caulking around window and door frames to cut this convection heat transfer.

The last thing to try to reduce convection heat transfers is to use tape-on or Zip-Loc type energy saving window kits to seal any windows that are particularly drafty, or windows that really need replacing but that can't be replaced because of your budget (or because you are renting the place). These kits are a great way to rapidly reduce your heating losses in winter: the kits normally come with several sheets of three by five foot transparent plastic, and a roll of double sided tape. (If you have a large number of windows to cover you can purchase a 48" roll of the plastic and buy the tape separately.) You measure and cut plastic rectangles slightly wider than the window, run the tape around the window frame, peel off the protective tape from the double sided tape, then set the cut plastic over the window, sealing along the tape line. Blow dry the plastic for five minutes, and it shrinks to form a tight, flat extra pane of 'glass' that is hardly unnoticeable. This plastic can hold its taut shape for months, although you may find it needs an occasional short blow dryer blast to pull up the odd wrinkle in the plastic.

The next heat loss you'll want to address is conduction - heat being conducted through the solid materials of the window. In terms of energy efficient window coverings, your goal here isn't actually to avoid this conduction - you can't usually change the materials the window was made of - but to add barrier layers between the window and the room to slow the conduction down. The plastic window insulation kits stop convection heat loss by eliminating drafts into the room, but they also eliminate conduction, by providing a layer of trapped air between the window and the room. A curtain can perform the same task: when closed, the curtain traps a small amount of air between the curtain and the window, so that on a cold day the air behind the curtain naturally gets cold but the room itself stays cozy.

When you install curtains on windows to reduce conduction heat loss, it's important to think about convection currents inside the living area. Hot air rises, and cold air falls, so if you install curtains you should make sure the air currents are stopped, preferably at both the top and bottom of the curtain. Otherwise, in winter, the cold window will cool the air between the window and the window covering, and that colder air will fall to the floor, pulling warm air from above the window covering down in front of the window in a continuous cycle. In summer, the flow runs the other way, with the air between the curtain and the window warming from sunlight, rising out the top opening, and drawing cool room air up towards the glass where it gets heated.

You should block these air flows by having the curtains flush against the wall at the top and bottom, or by having the bottom touch the floor and by closing in the curtain rod area at the top.

If you have cloth blinds that cover the window, you can use Velcro tabs along the sides of the blinds that you then press into Velcro tape along the window frame; this completely seals the air space between the window and the blind, providing an above average insulation layer. Cloth blinds as well as curtains can use a similar technique but with magnetic tape in the fabric, and metal on the framing, so that the cloth sticks to the walls on either side of and below the opening.

Another way you can try to add an insulation barrier to conduction through the window is to buy cellular blinds, which are made in a cellular or honeycomb cross section, or other blinds that incorporate a hollow space within the blind. Cellular blinds when fully pulled up use almost no space and the cells fold shut; when extended, they can add insulating value to a window from R-2 (for single-cell thickness) to R-5 (for double-cell).

Window blinds can help address the final type of heat transfer, radiation, by preventing heat from radiating through the glass (into the room from sunshine in summer, and towards the outside from the indoor radiant heat in cold weather). The most effective blinds use light, reflective colors on the outside, so that sunlight in summer is more or less completely reflected away from the room. Good window blinds can reflect sufficient solar energy away from a room to reduce heat gain by as much as 45%, but they do very little to the R-value of the window, so have little effect in winter.

Roller shades, which have a wind-up axle and can be pulled up or down (we used to call these blinds when I was young) are a great radiation reflector, and also provide superior insulating value to reduce convection air flows around the window that lead to conduction losses through the glass or window frame. Roller shades, because they are placed so close to the glass, do well at reducing convection currents, especially if their side edges and bottom are attached to the window frame (side tracks are used to accomplish this). Loose-sided shades can reduce heat transfer by up to 28%, while attached-edge shades reduce it up to 45%. Shades that can be reversed, with one side dark and the other light, are even better, because you can use the light side to reflect the heat where you want it (keep it out in hot weather, inside during winter).

Awnings and overhangs are a good way to cut direct light from entering a home and heating it up in summer. Because the solar angle is lower in the winter, such window coverings only block the sunlight you don't want, allowing the lower-angled winter sun in to help heat your home.

Storm windows - which were added to many older homes - can be up to 50% more energy efficient than single-pane windows, provided the storms are properly sealed against air leakage. So if you have old wooden-framed storms sitting around in your basement or garage, you should put them on each fall and take them down once winter has passed. If you have aluminum framed storms you can typically leave them up year round; just don't forget to slide the glass sash shut when autumn comes.

Windows form such a small percentage of the surface area of a house, yet they are one of the biggest potential sources of energy waste in a house being heated or air conditioned. So you should strive to do anything you can to restrict heat transfer through convection, conduction, and radiation. Just remember to set aside a portion of the money you save on reduced utility bills, so you can replace any old, energy wasting windows with brand new, energy efficient ones when the time comes.

Reducing Heat Losses Through Energy Efficient Window Coverings

Robin Green runs Green-Energy-Efficient-Homes.com, a website that helps people save energy in their homes. For more on energy saving window treatments, see Energy saving window coverings on Green Energy Efficient Homes.

Materials Which Absorb Solar Energy

Solar energy is simply energy which comes from the sun's power. This natural energy source can be used for a wide variety of things inside your home. Many people think of using solar energy for their electricity needs, and that is certainly an excellent way to use it. In most cases though, you can actually just use the sun's energy to help heat your home naturally. Doing this does not require the use of solar panels, solar cells, storage batteries, or any complicated grid setup. Of course you'll get much more benefit from setting up an actual solar power system using panels and grids, but if you simply want to start utilizing the natural power of the sun today, there are several ways you can do so.

Essentially all you need to do is set up a way to absorb the heat from the sun. In the winter for example, you can start reducing your electric bill by allowing the sun to supply some of the heat for your home. The easiest way to do this is to just open the curtains and allow the sun to shine into your home during the daylight hours. The sunlight will naturally bring warmth, and items inside your home will actually absorb that warmth too. Any items which help absorb the warmth from the sun will also help your house retain some of that heat after the sun goes down.

\"Energy Efficiency\"

You'll have much better results though if you purposely set out to try and absorb as much of the sun's heat as you can each day. And to do this, you simply need to know which types of materials absorb and retain the sun's heat easily.

Materials Which Absorb Solar Energy

Most types of metal for example will absorb heat quickly and easily. Some metal gets hot faster than others and releases that heat much more slowly. If you lay a sheet of copper in the sun for example, you'll notice it gets hot quite quickly. Once the sun goes down, the copper will start releasing its heat into the air around it. And this can be used as a natural heating system for your home. You could do the same type of thing with most metals.

Dark colored items also get hot quickly. You may have experienced this yourself in the summertime actually. Getting inside of a vehicle which has black seats will be much hotter to the touch than getting inside of one which has light-colored seats. And you can use this to your advantage when heating your home in the winter time as well. If you have dark colored furniture, then simply positioning them in a location of the room which gets sunlight during the day will allow them to absorb heat. You can also place dark curtains at the window, or position dark pieces of furniture, accents, or decor in the sunlight too.

Other materials which absorb heat very nicely include concrete, brick, Adobe, and water. If you live in a home which has concrete or brick walls for example, those walls will absorb heat from the sun throughout the day and store it. Then as the nighttime coolness creeps in the stored heat will slowly be released which helps maintain a comfortable temperature in your home while using less electricity.

Materials Which Absorb Solar Energy

©2008, Kathy Burns-Millyard. Get the latest solar power news, tips, information, tutorials, and advice plus learn more about solar water heating, solar cooking, solar electricity and much more at OfficialSolarPower.com

Australian Magnet Generator - A New Choice For Home Alternative Energy

Two inventors in Australia have managed to come up with a magnetic electric generator that actually works! Their invention which is becoming known as the 'Australian magnet generator' produces five times as much electricity than it consumes. This basically means free electricity!

It would seem that the days of solar power as the number-one alternative energy choice are numbered. Although very popular, solar power is limited in the amount of energy that it can produce. Most home solar power setups only produce a minimal amount of electricity.

\"Energy Efficiency\"

The Australian magnet generator on the other hand can produce enough electricity to power your whole house!

Australian Magnet Generator - A New Choice For Home Alternative Energy

Hundreds of thousands of people around the world have already built as and have said goodbye to expensive electricity bills.

Notice how I said 'built' and not 'bought'. These magnetic electric generators are not for sale and have to be built yourself. It's not as hard as you may think thanks to the detailed plans that are available to buy on the Internet for as little as .

As long as you have basic DIY experience, it is relatively easy to build the Australian magnet generator within two or three days. All the parts and materials needed to build it can be bought at any good DIY store.

It really is an ideal DIY project. If you haven't built one before I recommend building a smaller version first and testing it out. Once you know that it works you can then build the full-size version and get rid of your electricity supply forever!

Australian Magnet Generator - A New Choice For Home Alternative Energy

Get more information about the magnetic generator and see if it's the right alternative energy choice for you.

Let's face it, who doesn't want free electricity!

Go to http://barkingdolphin.com/magnetic-generator

Magnetic Generator - Free Energy Secrets That Power Companies Hate For You to Know!

So you want to know more about magnetic generators and homemade energy?

Well, the truth is there is a growing movement towards using alternative sources of energy to power homes and offices.

\"Energy Efficiency\"

I know how you feel; during the last blackout I was at a loss and became very frustrated trying to see my way around using candles!

Magnetic Generator - Free Energy Secrets That Power Companies Hate For You to Know!

After that experience I decided it was time to look into backup power generators.

The research I undertook led me to a few guarded secrets.
Information that I will share with you here.

What secrets? Well, first I came to understand that there were a lot of alternative ways to power my home besides the ways the monopolies were pushing.

And I found out that there was good information available on free energy.

Like using magnetic energy to power my home. This is a very affordable way to achieve freedom from energy companies!

Warning! There are a lot of "free" manuals out there that will mislead you about building a magnetic energy motor at home. Don't be mislead! Get a thorough plan from a reputable source. Below are some links to take you to the right places.

Magnetic power generators use magnets to create continuous energy. This is easily and cheaply built with just a few common items. It will take you a little above an hour to build your first one. Once built it can be placed wherever you want in your home.

Don't let your power company fool you any longer!

Magnetic Generator - Free Energy Secrets That Power Companies Hate For You to Know!

If you are mad about throwing good money away and you're ready to power your home for free, visit

http://www.budurl.com/powerfree and take control of your energy usage!

FREE information on generating free power as well as tips for building your magnetic energy generator!

New Laws on Energy Efficiency Standards Encourage Upgrading Your Air Conditioner and Furnace (HVAC)

You might not know it, but something changed in 2006 that will affect the choice of products available to you when it comes time to replace your Heating, Ventilating and Air Conditioning (HVAC) equipment. Don't worry, this affect on the equipment available to you is a good thing. The U.S. government has mandated that the energy efficiency of all HVAC systems installed after January 23, 2006 must meet certain minimum benchmarks. The benchmarks referred to are the Seasonal Energy Efficiency Ratio (SEER) and Annual Fuel Utilization Efficiency (AFUE).

In the years prior to this mandate being enacted, many air conditioners only had a SEER of 10, and furnaces had AFUE percentages of as low as 50%. New air conditioners must now have a SEER of at least 13 and furnaces have to achieve an AFUE of 80% or more. That is an increase in efficiency of 30% from air conditioners that were 10 SEER, and an increase of 38% for a furnace that had an AFUE of 50%.

\"Energy Efficiency\"

Now, the government is not going to make you go replace your old system to meet the new standard-it only applies to new HVAC installation. If you have one of these older, less efficient systems you may continue to operate it as long as you please, but why would you want to? Many of the systems available today are actually much more efficient than the government has mandated, giving you the potential of substantial savings on utility bills.

New Laws on Energy Efficiency Standards Encourage Upgrading Your Air Conditioner and Furnace (HVAC)

For an average home, the lower utility bills alone could save a household about 0 a year. But there is more-the IRS is providing tax incentives for homeowners who upgrade their home's energy efficiency to meet the government's requirements for the program. This means meeting higher benchmarks for energy efficiency, but these are easily attainable with the equipment available today.

There is something else to consider. It is going to become more expensive to service your older air conditioner. It most likely uses a CFC or HCFC refrigerant, and these have been essentially banned. In fact, after 2010 these will be highly restricted, and your HVAC service company will only be able to purchase these refrigerants at a premium. It will be very expensive to use these to service your old air conditioner. There are replacement refrigerants available, but they are incompatible with older systems and can only be used in newer systems designed for them. You do not want to be stuck in one hot Atlanta summer with an old, inefficient air conditioner that doesn't work and can't be serviced, do you?

Given potential utility savings and tax incentives, plus the issue of sheer serviceability, there is plenty of reason to install a newer, more environmentally friendly system. But, it's also the right thing to do. Heating and cooling amount to approximately 50% of a home's energy use, so by acting to minimize this slice of your energy use, you are taking action to reduce the size of your footprint on a heavily trampled planet.

New Laws on Energy Efficiency Standards Encourage Upgrading Your Air Conditioner and Furnace (HVAC)

Bardi Heating and Air conditioning is an Atlanta air conditioning repair specialist and a trusted name in the heating and air conditioning business. To learn more their services please visit http://www.bardi.com

10 Benefits of Solar Energy

Benefits of Solar Energy:

1. Solar energy is renewable. We never have to worry about running out of sunlight or using it all up. The sun is a consistent power source meaning it's always going to be there every day.

\"Energy Efficiency\"

2. Solar energy is environmentally friendly. Compared to fossil fuels which release greenhouses gases, carcinogens and carbon dioxide, solar cells don't release anything into the air.

10 Benefits of Solar Energy

3. Solar panels are extremely reliable. There are no moving parts so you don't have to worry about replacing anything. In fact, most people generate electricity for 1000s of hours with little or no maintenance.

4. Solar cells make no noise while collecting energy. There are no other renewable energy sources that are completely silent.

5. In the long run, solar electricity is cheaper than buying it from the power company. There is a start up cost, but then it starts paying for itself. Once you break even, everything after that is profit. Compare this to paying a monthly bill and getting no return on investment.

6. There is a huge variety of solar panel systems available. Some can cost tens of thousands of dollars, and some cost just a couple hundred. This means anyone can get into solar, there's an entry point for just about everybody.

7. You're not required to connect to the power grid. You can be completely self-sufficient and live off-the-grid. Imagine never paying another monthly bill or hook-up charge.

8. Sell excess electricity. If you build a large enough solar panel system, you can make your electric meter spin backwards! Most power companies will gladly buy or credit you for this excess electricity. Contact your local power companies for more details.

9. Government tax credits. Most governments will provide some kind of tax credit or incentive for people purchasing solar energy systems. On average, rebates usually cover 20-30% of the system cost. Contact your local representatives for more details.

10. Solar technology is constantly improving. Solar installations are increasing by an incredible 50% every year, most of which are small homemade systems. Learn how to make your own solar panels and use the benefits of solar [http://www.squidoo.com/renewableenergyforhome] energy to your advantage.

10 Benefits of Solar Energy

Click here [http://www.squidoo.com/renewableenergyforhome] to see my reviews of solar power guides. See which are the best value and which ones are a waste of money.

Gas Fireplace Inserts Can Help Energy Efficiency

While we all enjoy the beauty and sounds of a wood burning fireplace, nothing compares to the efficiency of a gas fireplace. They also provide a cleaner burning fire, they are safer to use, and easier to work with.

The question I hear a lot is, "How can I have a gas fireplace, mine is wood burning?"

\"Energy Efficiency\"

Well, there is no need to rip out your existing fireplace and spend thousands of dollars. The answer is to install a gas fireplace insert.

Gas Fireplace Inserts Can Help Energy Efficiency

In simple terms, a gas fireplace insert will fit inside your existing fireplace and change it over to gas. You have the option of installing it directly in the fireplace or getting a ready-made factory unit.

As far as costs go, a gas fireplace insert can cost anywhere from a few hundred dollars to a few thousand.

The design aspects are numerous. These inserts can come with brick and tiles already set in place, or they can be empty, allowing you the opportunity to add your own distinct design. To make things even easier, some units give the ability to simply slide tiles in place without having to permanently install them.

The biggest reason for installing a gas fireplace insert is of course, the energy savings. While a wood burning fireplace looks great, it is not efficient in heating a room without a blower. In fact, they actually suck the warm air out of the room and up the chimney.

A gas unit will allow you to add a metal grille to aid in heating your room. If you only use your fireplace for an occasional fire, you won't need a grille.

So, don't think it will cost thousands, or require you to tear out your existing fireplace to change over to gas. With a gas fireplace insert you can do it quickly and affordably.

All Rights Reserved Worldwide. Reprint Rights: You may reprint this article as long as you leave all of the links active and do not edit the article in any way.

Gas Fireplace Inserts Can Help Energy Efficiency

Terry Edwards is the owner of Fireplaces A-z, a website providing great information about fireplaces and fireplace accessories. You can learn more about Gas Fireplace Inserts as well as much more information on all types of fireplaces at http://www.FireplacesA-z.com

Energy Efficiency - Green Your Current Desktop or Laptop Computer

According to the April 2008 edition of PC Magazine flaws in Windows XP's sleep mode may have added up to billion a year to power bills worldwide. Unless you purchased a special energy efficient model, have used third party applications to manage your power management setting or have manually adjusted your power management settings then your current computer is most likely not as energy efficient as it could be.

What can I do to improve my existing computers energy efficiency?

\"Energy Efficiency\"

Unless you are a computer expert, managing your system configuration for optimal energy efficiency may be a bit daunting. For the sake of simplicity to optimize the power management settings in Windows machines I recommend free software such as the CO2 Saver from Snap.com.

Energy Efficiency - Green Your Current Desktop or Laptop Computer

The CO2 Saver

This lightweight computer program manages your computer's power setting when it is idle. By managing your idle power setting the CO2 Saver can save you energy and in turn reduce harmful CO2 emissions and more. As an added benefit of the CO2 Saver clearly shows you what your personal CO2 reduction has been as well as total CO2 reduced by everyone using the program.

How effective is it?

To date Snap's CO2 Saver has prevented 607,206 lbs or 303.6 tons of CO2 emissions. To put that into perspective the total savings provided by this software is equivalent to:

  • Not driving a vehicle for 552,005 miles. Why? The average car with a single driver emits 1.10 lbs of CO2 per mile.
  • Planting 60,720 trees. Why? On average a tree absorbs 10 lbs of pollutants from the air each year.

Downloading Snap's CO2 Saver

You can download Snap's CO2 Saver free of charge at:

Even though this application is currently only available for Microsoft Windows XP and Windows Vista based computers it has already shown significant environmental benefits. It's easy to install, is free of any malware or spyware and gives you a constant reminder on your desktop of your personal environmental responsibility.

Energy Efficiency - Green Your Current Desktop or Laptop Computer

Sam Greyhawk is an energy efficiency evangelist who works with Cool-N-Save(tm), an Energy Star Partner. Cool-N-Save(tm) is an energy efficiency device for your air conditioner. This improvement in efficiency can reduce your AC electric bill by up to 30%. Saving energy helps fight global warming. Cool-N-Save(tm) is an easy and cost effective way for you to reduce your energy usage dramatically.

Energy Efficiency - Buying a New Plasma, LCD or Flat-Screen Television with Energy Star

Are you in the market for a new television set? Are you considering a plasma, LCD or flat-screen model? Have you considered it's energy efficiency? While most people shop for televisions with specific features already in mind, they rarely consider energy efficiency. Why is energy efficiency important in televisions? According to Energy Star, "today's TVs, when combined with related products like DVD players and set-top boxes, make up about 10% of a household's annual electricity bill."

Powering Your TV and it's Effect on the Environment

\"Energy Efficiency\"

Watching television may seem harmless enough, but it's important to realize the environmental impact of the electricity you use. Generating electricity is a dirty business - especially in the United States. In 2006, nearly half (49%) of the country's 4.1 trillion kilowatt hours of electricity generated used coal as its source of energy. Why do we still rely so heavily on coal in today's more environmentally conscious world? You can find the answer in a recent MIT report titled The Future of Coal where they state, "Coal is a low-cost, per BTU, mainstay of both the developed and developing world," they continue with the following frightening statement, "its use is projected to increase."

Energy Efficiency - Buying a New Plasma, LCD or Flat-Screen Television with Energy Star

Growing Power Needs

If 10% of your household's annual electricity bill doesn't seem outrageous to you then consider the following, according to Keith Jones of Digital CEnergy Australia, "by 2012, it will be safe to say that televisions will use more power than the average refrigerator in an average household."

Energy Efficiency - A Simple Solution

Thankfully, there is a simple solution - energy efficiency. The more energy efficient your new television is, the less electricity you use and the less pollution you contribute. With the help of Energy Star, finding an energy efficiency television has never been easier. Energy Star rated televisions use about 30% less energy in comparison to standard units. Energy Star also provides ratings on almost every type of television on the market - from standard TVs, to HD-ready TVs, to the largest flat-screen plasma TVs.

To maximize the energy efficiency of your new television, if possible, I recommend holding your purchase until after November 2008. According to Energy Star, "in November 2008, a new, much more stringent ENERGY STAR specification for TVs will be effective." This new standard will include efficiency improvements for both standby and active modes.

Finding Energy Star Rated Televisions

If you are ready to shop today then you can find Energy Star rated televisions using their free web-tool:

The following stores also carry Energy Star rated "Home Electronics" so you should be able to compare Energy Star models personally.

  • Best Buy
  • Costco
  • Sam's Club
  • Sears
  • Wal-Mart

To find the closest store near you, Energy Star provides the following free web-tool:

It's important to always remember using energy efficient devices is an easy way to reduce your carbon footprint. Not only does energy efficiency help save the environment for future generations, it also saves you money each money by lowering your monthly electricity bill. When you purchase your next television, make the environmentally smart choice and purchase one rated by Energy Star.

Energy Efficiency - Buying a New Plasma, LCD or Flat-Screen Television with Energy Star

Sam Greyhawk is an environmental evangelist who spreads the message of reduce, reduce and recycle. Learn about greenwashing [http://www.stopgreenwashing.org/] and how to avoid it by visiting Stop Greenwashing [http://www.stopgreenwashing.org/]. Track interesting environmental stories by topic at Nature Web [http://www.natureweb.us/].

Energy Efficiency - Bicycles Are An Energy Efficient Transportation Choice

In the United States, we live in an automobile based culture. Many people don't think twice about driving their vehicle short distances to run errands - a mile here, a mile there. What many people don't realize or choose to ignore is that driving alone is one of the least climate-friendly forms of transportation.

Driving Alone

\"Energy Efficiency\"

How bad is driving alone relative to other forms of transportation? According to the Sightline Institute with a single driver, you can expect an average of:

Energy Efficiency - Bicycles Are An Energy Efficient Transportation Choice

  • 1.57 lbs of CO2/Mile in a "Sport Utility Vehicle" (15 MPG)
  • 1.10 lbs of CO2/Mile in an "Average car" (21.5 MPG)
  • 0.59 lbs of CO2/Mile in an "Economy car" (40 MPG)

Obviously filling your vehicle to capacity helps, just consider this:

  • 0.37 lbs of CO2/Mile in an "Average car" (21.5 MPG) when Carpooling with three people

While filling to capacity can help for short errands it isn't always an option. So what can you do?

Riding a Bicycle

Riding a bicycle isn't just good for the environment with a net 0 lbs of CO2/Mile, but it's good for you too. Short errands are just one of many uses you'll find for your bicycle - once you start riding again. While you may miss your trunk space at first a quality bicycle grocery bag, panniers or even a basket can reduce this stress. Which one you choose is up to you based on your own personal needs but for the average grocery hauler I would recommend one the following three products:

  • Jandd Grocery Bag Pannier
  • REI Grocery BagREI Novara 'Round Town panniers
  • Cobbworks Oyster Bucket Panniers

If you expect to be hauling lighter loads then you may be a good candidate for a removable handlebar mounted basket - these can often double as a "reusable shopping bag" too.

How Energy Efficient is a Bicycle?

Did you know calories are actually a unit of measurement for the amount of energy that your body can extract from foods . With many new biofuel technologies available today, many of the foods we eat can also be converted into fuel for our vehicles.

According to World Watch Magazine the average automobile burns 1,860 calories per mile per passenger. How does that compare to the average bicycle? The average bicycle and rider burns 35 calories per mile.

Why are bicycles so much more efficient? The key to the energy efficiency of the bicycle is simple - a bicycle and rider are extremely light compared the average car. In a 2 ton vehicle with a 170 lbs driver the driver is only 4% of the total weight. On a heavier 30 lbs bicycle that same driver will be 85% of the total weight. In a vehicle 96% of the energy used each mile is used moving the vehicle itself - not the drive. On a bicycle only 15% of the energy used moving the bicycle itself.

Bicycles are so efficient in fact that under the right conditions a rider can ride faster then a cheetah. In 2002, Canadian rider Sam Whittingham reached 81 mph using a recumbent bike called the Varna Diablo II. That is 11 mph faster than a cheetah which over short distances can attain a top speed of 70 mph.

It's often said you never forget how to ride a bike so why not take advantage it. Riding a bike is not only one of the most energy efficient modes of transportation, it is also one of the most relatively inexpensive. Do you part to fight global warming by taking your bicycle out for a ride.

Energy Efficiency - Bicycles Are An Energy Efficient Transportation Choice

Sam Greyhawk is an energy efficiency evangelist who works with Cool-N-Save(tm), an Energy Star Partner based in Huntington Beach, California.

Cool-N-Save(tm) is an energy efficiency device that can instantly reduce the cost of operating your air conditioner. Installed in ten minutes with no tools required the Cool-N-Save(tm) is an Energy Star Partner [http://www.coolnsave.com/cool-n-save_is_an_energy_star_partner.html] and has been scientifically proven by Tulane University [http://www.coolnsave.com/scientific_analysis_of_cool-n-save.html] to improve air conditioner efficiency by up to 30%. Saving energy helps fight global warming. Cool-N-Save(tm) is a low cost way for you to dramatically reduce your air conditioners energy usage.

Energy Efficiency - Purchasing an Energy Efficient Room Air Conditioner

Are you in the market for a new air conditioner? Have you been considering a room air conditioner instead of a central air conditioner but aren't sure what you should be looking for? Purchasing an air conditioner of any type should be researched before hand simply due to the amount of electricity your air conditioner could potentially use. If you purchase the wrong unit you may end up with extremely large monthly electric bills and inefficient cooling.

As a consumer you definitely want to find the best performing unit for you. You want to find a unit which is very energy efficient because not only will it save you money in the long run, it's better for the environment as well. Energy efficiency is about making the best or most efficient use of energy in order to achieve a given level of comfort and convenience.

\"Energy Efficiency\"

What is a Room Air Conditioner?

Energy Efficiency - Purchasing an Energy Efficient Room Air Conditioner

A room air conditioner is an air conditioning system designed to cool a room or rooms instead of the entire house. Do you live in a smaller home, townhouse, condo or even apartment? Would you prefer or do you require a non-permaneant air conditioning installation? If you answered yes then a room air conditioner may be a good matched for you. In comparison to central air conditioners, room air conditioners are dramatically less expensive to operate - even though they are often less efficient.

While central air conditioners often need higher voltage connections a room air conditioner can often be plugged into any 15- or 20-amp, 115-volt household circuit. If you have a larger room air conditioner you may need a dedicated 115 volt-circuit. In only the most extreme cases will you ever need a dedicated 230-volt circuit.

Room air conditioners are often vented or window mounted so they can effectively expel hot air out. Be wary of any room air conditioner that does not offer proper ventilation.

How are Room Air Conditioners Rated?

If you are familiar with central air conditioners you may be already familiar with the SEER or Seasonal Energy Efficiency Ratio. Room air conditioners are rated not on in SEER but rather in EER or Energy Efficiency Ratio. The EER of a given room air conditioner is calculated by dividing the cooling capacity in British Thermal Units (BTU) per hour by the power input in watts. You can find room air conditioners offering a range of cooling powers from 5,500 BTU per hour to 14,000 BTU per hour.

While the national appliance standard requires that any room air conditioner built after 1990 to have an EER of 8.0 or greater, and the latest Energy Star standards require in some cases an EER of 10.7 or greater I support the American Council for an Energy-Efficient Economy's (ACEEE) recommendations. The ACEEE recommends at least an EER of 11.6. Why? This will guarantee your unit is energy efficient throughout the year and when it is needed most - the hottest summer months.

Selecting a Room Air Conditioner

Once you've decided to purchase a room air conditioner make sure you look for the Energy Star label. If every room air conditioner sold in the U.S. were Energy Star qualified, we could prevent 1.2 billion pounds of greenhouse gas emissions to put that into perspective that is equivalent to the emissions from 100,000 cars. Energy Star room air conditioners use at least 10% less energy than conventional models.

In the room air conditioner game Energy Star isn't the only certification to be looking for. You should also look for Association of Home Appliance Manufacturers or AHAM Certified units. Why? AHAM Certified room air conditioners have their EER ratings verified by an independent laboratory.

Getting the Right Size

Room air conditioners like all air conditioning units are rated by the number of British Thermal Units (BTU) of heat they can remove per hour. Another common way of rating air conditioners is by the "ton," some example are 5,500 BTU per hour or 14,000 BTU per hour.

Getting the right size room air conditioner for your application is crucial. If you get the wrong size you can easily waste large volumes of electricity. The size of your air conditioner depends upon:

  • How large is your home and how many do you have?
  • How much shade do you have? Do you have shade on your home's windows, walls, and roof?
  • Are the ceilings and walls of your home insulated properly?
  • Do you have air leaks?
  • How much heat do you, the occupants, and appliances generate?

Remember the key to any air conditioners efficiency and performance depend on you properly matching the size of the AC unit to your specific application.

If you find this a bit confusing then you can always use the free AHAM tool. AHAM offers a handy online tool which can help you calculate your air conditioner (or evaporative cooler) needs.


Installing your Room Air Conditioner

When you install a new room air conditioner you should try to locate the air conditioner in a window or wall area near the center of the room. It is also beneficial to install your air conditioner on the shadiest side of your house. Try not to let your installation increase air leakage - you can minimize this by fitting the either the room air conditioner or its ventilation snugly into its opening and sealing gaps with a foam weather stripping material.

Are Room Air Conditioners my only non-permeneant cooling option?

If you live in a drier climate, somewhere with a relatively humidity level below 50%, then you may be well matched for an "Evaporative Cooler" sometimes referred to as a "Swamp Cooler." An evaporative cooler cools by using a fan to force air through moistened pads. As the hot air passes through the pads, the pads absorb the heat and cool the air in some cases as much as 15-20 degrees.

Evaporative coolers are not for everyone. In the wrong climate, in the wrong conditions an evaporative cooler can create conditions of high humidity in the air which in turn can cause condensation and even corrosion.

In the right conditions and climate, evaporative coolers, can provide cost very effective cooling. When compared to air conditioners, evaporative coolers use an average of 75% less electricity. Evaporative coolers are very energy efficient.

If you think you are a good candidate for an evaporate cooler you can use the free AHAM tool referenced earlier to calculate the proper size for your specific application too.

In many parts of the world air conditioning can seem like a life saver, but it comes at a cost - first in dollars spent for electricity, and second in carbon dioxide pollution from the generation of electricity. According to the the American Council for an Energy-Efficient Economy (ACEEE) we create an astounding 140 million tons of CO2 cooling our homes. You can easily save electricity by purchasing a correctly sized Energy Star rated room air conditioner. By saving electricity you are doing your part to fight global climate change.

Energy Efficiency - Purchasing an Energy Efficient Room Air Conditioner

Sam Greyhawk is an energy efficiency evangelist who works with Cool-N-Save(tm), an Energy Star Partner, based in Huntington Beach, California.

Cool-N-Save(tm) is an energy efficiency device that instantly improves the efficiency of your existing air conditioner. Installed in ten minutes with no tools required, Cool-N-Save(tm) is an Energy Star Partner [http://www.coolnsave.com/cool-n-save_is_an_energy_star_partner.html] and has been scientifically proven by Tulane University [http://www.coolnsave.com/scientific_analysis_of_cool-n-save.html] to improve air conditioner efficiency by up to 30%. Saving energy helps fight global warming. Cool-N-Save(tm) is a low cost way for you to dramatically reduce your air conditioner energy usage.