Welcome to Utility Improvements. Lower your utility bills today by insulating your home with our patented Radiant Barrier Technology.
Monday, September 30, 2013
Temper Shield Installations in Fall
Monday, August 19, 2013
New Home Construction & Radiant Barriers
Friday, July 19, 2013
Reducing Your Heating and Cooling Bill in North Carolina
Thursday, May 3, 2012
Radiant Barrier History
Back in 1860, French scientist Jean Claude Eugene Peclet began experimenting with high and low emissive metals; particularly, the effect these metals had in terms of insulation. Peclet discovered that there was a reduction in BTUs with these types of surfaces, and that these surfaces could help reduce the transfer of heat.
Since then, radiant barrier technology has been used in a variety of different ways. NASA has used it to protect its ships and astronauts from thermal radiation. Space blankets became a way to better trap body heat in cold temperatures. And some windows now utilize the technology to provide more insulation.
Interested in a radiant barrier for your home? Get in touch with Utility Improvements today and ask about Temper Shield! (800) 230-2197.
Monday, October 24, 2011
Should You Install a Radiant Barrier in a Cold Climate?
Monday, October 10, 2011
How Radiant Barriers Work
Wednesday, August 3, 2011
What Is a Radiant Barrier
Wednesday, July 6, 2011
Temper Shield FAQ
Wednesday, June 1, 2011
Home Insulation Tips to Save Energy & Money
Wednesday, May 4, 2011
Save Up to 50% on Utility Bills with Temper Shield
- Unlike mass-produced insulation, Temper Shield reflects heat, not just slows it down
- Temper Shield keeps heat in the home during the winter, and reflects away the hot summer sun
- The product has been tested by the Florida Solar Energy Center at Cape Canaveral, and results found Temper Shield provides significant resistance to heat transfer
Wednesday, March 2, 2011
Radiant Barriers - Save On Utilities By Improving the Insulation and Running the HVAC System Less
When rolls of radiant barrier sheeting, which are composed of foil, are unrolled and installed in either an attic or crawl space under a home it is designed to prevent the outside temperatures from entering the home. The manner in which the radiant barrier works is similar to that of a foil wrapped baked potato and is based on technology highly implemented by NASA. As strange as this may sound, the use of radiant barriers is highly effective.
Unlike all other insulations, which receive an R-value indicating the thermal resistance of the insulation, radiant barriers are assigned different values. These values are emissivity and reflectivity. Emissivity or emittance refers to how much energy in the form of heat is radiated from the membrane. The lower the emittance rating; the better performance can be gained from a radiant barrier.
Closely related is the reflectivity of the foil barrier even though it may not be visually reflective. The reflectivity refers to the amount of energy is reflected away from the membrane. Reflectivity is rated from 0-1 or listed as a percentage up to 100%. The higher the percentage; the more effective the barrier will be. As the reflectivity rating increases the emissivity rating will decrease. A high reflectivity and low emissivity rating is most desirable.
New construction in progress will allow the installation of the barrier to be faster and easier. That does not mean that these barriers can not be installed in existing homes. While clearances will be tighter in a completed building, a home can be retrofitted with a radiant barrier membrane. The investment will be more expensive, but should come in well under what adding other traditional types of insulation would cost.
It is important to note that there are different types and quality of radiant barriers. Some are double sided, while others may be perforated. An example of this would be installing a perforated barrier in an area prone to high humidity, thereby allowing the environment to breathe in order to prevent mold. Installing a perforated membrane will not defeat the purpose of a radiant barrier. Depending upon the specific conditions present, an experienced and qualified installer like Utility Improvements may make recommendations on how you can lower your utility bills today by insulating your home.
Article independently authored by Dan Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements. Click for search engine optimization and search engine marketing or visit WebDrafter.com's Blog.
Tuesday, December 7, 2010
Utility Bills...
There are several methods for insulating a home. Some are more effective than others. When the building is in the construction phase insulating is fairly straight forward and can appear to happen overnight. When the home has already been completed improving the insulation by retrofitting the home can be quite time consuming and difficult.
With being so labor intensive and possibly opening up walls to insert insulation, cost is a major concern. Setting aside the amount of time and expense of adding traditional insulations, the type of insulation installed is exceptionally important. Traditional types include fiberglass, foam and blown in insulation.
Although the technology is not exactly new, one of the more recent applications in home insulation has been radiant barriers. A radiant barrier is an effective method for improving the energy efficiency and comfort of a home. Essentially a radiant barrier is a foil backed sheeting which can be installed a number of different ways.
The purpose of the foil is to reflect the radiant temperatures. An over simplified way to explain is, much like a aluminum foil wrapped baked potato, heat can either be retained within the living quarters of the home during cold days or reflected away from the home interior on hot days. In either scenario, the interior temperature will be maintained with a minimal amount of heating or cooling from the HVAC system.
The most common place to install a radiant barrier is in the attic. The sheeting can either be installed on top of the ceiling joists or along the bottom edge of the roof rafters. Which placement largely depends on how well vented and circulated the air is in the attic. If installed improperly, like all insulation can, additional problems may crop up such as mold. Additional installation points can be in crawl spaces underneath a home.
Although installing a radiant barrier can be accomplished by a mechanically inclined home owner; it will almost always be back breaking work due to confined spaces and potentially dangerous conditions. The effectiveness of the radiant barrier will be compromised if close detailed attention is not used when overlapping or joining the runs of sheets. As a result, it is not recommended that even those home owners who are handy, attempt to treat this project as a do-it-yourself project. An experienced and qualified installer will be able to determine which method will work best for each situation.
| To learn more about radiant barriers visit Utility Improvements or call 1.800.230.2197 today! |
Tuesday, October 19, 2010
Efficiency Benefits of Using a Radiant Barrier with Thermal Insulation
Homes which are being constructed today are "not built like they used to be", which can actually be a benefit. Present day construction techniques are more efficient on time and labor. Some of the materials used today, such as radiant barriers or foam, were not used in older homes because they simply did not exist. These newer types of insulation provide increased energy efficiency and monetary savings for home owners.
Houses built before wall board was invented were almost always incorporated lathe and plaster on the interior. Sufficient insulation to maintain a comfortable interior temperature was almost never used. Fireplaces were a common solution through a home. As a result of poorly insulated walls and prolific fireplaces, older homes have drafts and large air leaks which contribute largely to expensive utility bills.
Even in contemporary construction many builders will put the minimum amount of components into a house in order to just satisfy the minimum building code, whereas in a quality built home, much of the energy efficient materials are actually not readily visible. Future residents are always the ones to lose in these scenarios. There are, however, a couple of solutions to the age old problem of leaky and drafty houses.
Retrofitting an existing home with foam, cellulose or batting is often an invasive, laborious and expensive option. Another option, which has been growing in popularity due to the ease in which it can be installed, is a radiant barrier. There are several advantages of utilizing radiant barriers.
Radiant barriers can be used in the attic and underneath a home solely as the main type of material to insulate a home or augment existing insulation. Radiant barriers work by reflecting the outside temperatures away from the living quarters. Conversely these radiant barriers also help to maintain a comfortable interior temperature from escaping through the attic.
An oversimplified description of a radiant barrier is that it is a sheet of cellophane with a reflective foil layer on one or both sides. There are different procedures for installing a radiant barrier membrane. The two most common methods of installation are laying it on top of the attic floor joists and any insulation which may already be present or securing it to the underside of the roof joists. In either case it is important to maintain airflow in order to prevent an environment which will support the growth of mold. Some radiant barriers have small perforations to prevent just this particular situation.
When selecting a radiant barrier it is important to be aware that the insulation rating is not assigned an R-value, but is assigned its own scale of effectiveness. A professional installer will know which type of radiant barrier and what manner of installation will maximize the energy savings on heating and cooling the home. Minimizing the frequency and amount of time needed for the air conditioner or heat to run translates to direct monthly savings.
| For additional information on the topic of insulation and energy efficiency visit Utility Improvements. Article independently authored by Daniel Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements. Click for search engine optimization and search engine marketing or visit WebDrafter.com's Blog. |
Thursday, October 14, 2010
Energy Audits - Reveal Suprises With Insulation and Air Conditioning or Heating Leaks
There are an almost endless variety of methods for saving money on monthly utility bills. For most home owners it means retrofitting an existing house or stop using electricity and water. While the latter two options are not a good or realistic solution, increasing the energy efficiency of the home is the best choice. There are several ways to do this from do-it-yourself projects to hiring a professional contractor or remodeler to complete the necessary renovations.
Some of the most basic maintenance and improvements pertain to one of the most common and problematic areas of a home's energy loss. Leaky gaskets and trim around doors and windows allow heat to penetrate into the home during summer time and escape during the winter months. Replacing door gaskets and improving the insulation around windows can generally be considered to be a straight forward task that many home owners should be able to accomplish.
Attending to the doors and windows however, will only address part of the problem of heat loss. The insulation in older homes can often be superior compared to newer residential construction. Many times it is not. An inexpensive and eye opening solution to determining the weak spots in the home's thermal envelope is to have a home energy audit take place.
Energy audits will reveal poorly insulated parts of the walls, ceilings and door and window frames. One weakness almost every home owner can expect to see is along the ceiling where there are built-in light fixtures or where walls meet the ceiling. Houses which have crawl spaces underneath the living quarters will also likely have poorly insulated areas.
Until relatively recently, the only way to correct these problems was to climb into the attic or underneath the home and add additional amounts of insulation. Adding insulation to walls, however, often proves to be messy, time consuming and expensive due to difficulties and labor costs. There have not been any acceptable alternatives until now.
One major development which has received nationwide attention and is becoming an increasingly popular method for improving energy efficiency is radiant barriers. Radiant barriers can be laid throughout an entire attic space from exterior wall to exterior wall. Unlike every other type of common insulation, rather than impeding the heat from penetrating through into the living quarters, radiant barriers actually reflect the heat of summer away from the ceiling and back out through the attic. The major benefit to adding a radiant barrier is that it is a non-invasive method for installing insulation or buttressing up existing insulation, unlike creating holes in the walls for installing blown loose fill insulation and then patching the holes. Radiant barriers will simply span the entire structure.
Different methods or techniques exist for applying radiant barriers. There are also different types of radiant barriers. Some are perforated, solid or double-sided. Which type will work best in an application will be determined by each specific situation and construction. A professional installer should be able to explain how and why one type and method is better than another.
| For additional information on the topic of improving insulation using radiant barriers visit Utility Improvements. Article independently authored by Daniel P. Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements. Click for search engine optimization and search engine marketing or visit WebDrafter.com's Blog. |
Wednesday, October 6, 2010
Home Energy Audits - How to Best Insulate the Leaks and Hot Spots in the House to Save Money
As energy and utility costs continue to skyrocket, energy efficiency has been thrust into the spotlight with regards to home appliances, vehicles, and fuel. The most expensive home appliance to operate is not the stove or dryer, but the HVAC system. Air conditioners use large quantities of energy, especially with every summer season becoming hotter and hotter. The culprit to high utility bills is not necessarily an inefficient air conditioner, but a drafty and poorly insulated home.
Home energy audits are relatively inexpensive, but can reveal all the cracks and crevices areas of the home where the home owner's money is slipping through. Infrared video cameras are a common tool to determine where much of the cold spots are throughout the house. During the summer season, hot spots will usually show up as a vivid red or yellow where the heat is penetrating into the home. During winter time, cold spots will be revealed as dark patches where the cold is infiltrating the envelope of the home.
Another useful tool is the blower door test where a door leading to the exterior is block off with heavy weight plastic sheeting and a powerful fan blowing out. By doing this, any leaks at poor gasket seals along doors and windows will be discovered. The majority of poorly insulated areas are located at windows and doors. Another common area is an attic access panel.
Even with these home energy audits, it still only reveals where the weak spots are in the envelope of the house; what to do about it is an entirely different problem. Tearing down wallboard to increase the insulation or knocking holes in walls for applying blown in insulation is a time consuming and often expensive solution.
A much faster and less invasive method for improving the home's insulation is to add a radiant barrier the full width and length of the attic. Radiant barriers do not perform as traditional insulation. Traditional insulation works by slowing the thermal transmission from the home's exterior to the interior, whereas radiant barriers actually reflect the thermal radiation which is what people experience as heat.
There are several different types of radiant barriers on the market. Some barriers are double-sided whereas others can have small perforations which allow air circulation through the membrane. Circulation is extremely important in attic spaces in order to reduce and inhibit mold from developing. Depending upon the specific application, however, a perforated radiant barrier may not be required. The local installer will be able to adequately advise the home owner as to the most efficient application for their home.
| For additional information on the topic of lowering utility bills and energy efficient homes visit http://www.utilityimprovements.com. |
Monday, August 9, 2010
Radiant Barriers - More Cost Effective Than Ripping Out Drywall to Retrofit Insulation
There are numerous different types and brands of insulation available on the market today for residential and commercial construction. Some of the more popular choices have been fiberglass, cellulose types, polystyrene (blue board) and spray foam. All of these different types of insulation are assigned an R-value which "grades" each in terms of thermal resistance. One type of insulation, which is graded on a different scale and has been receiving increased attention of the media due to its environmentally green benefits, is radiant barriers.
Most insulation works on the same premise of providing a dense barrier between the interior of the building and the exterior. Different types of insulation are more effective than others. As the denseness of the insulative material increases so does its effectiveness. Whether the building envelope is sealed or not, also will affect how well the building is insulated from the heat or cold.
Fiberglass insulation, although relatively inexpensive and the most prolific in its use, allows copious amounts of air to pass through compared to others. Despite attempts to seal the building envelope, fiberglass will not help to achieve this goal. Even though spray foam is more expensive, it has been one of the most effective. The reason for the increase in expense is due in large part to specialized gear for proper installation and its greater effectiveness at sealing small crevices and air seepage.
All of the above mentioned insulation can be excellent choices depending upon the requirements. For those home owners or business owners with existing and completed structures, it would be prohibitively more expensive to retrofit than to have installed in new construction. There is an excellent and cost effective alternative to ripping out drywall, installing additional insulation and dry-walling back over again.
Radiant barriers are the perfect answer to improving the existing insulation of a home or office. Rather than slowing or blocking radiant heat from penetrating through, radiant barriers will actually reflect up to 97% of the heat. Surprisingly, radiant barriers do not have an R-value, but are rated on emissivity and reflectivity.
Common installation points are either in the attic or a crawl space underneath the structure. Much like the other types of insulation, there are a few different types of radiant barriers available. Depending upon the location of the installation, one may serve better than another. The different types are perforated, solid or double-sided radiant barriers. The installer should know which type will provide the most benefit specific to the application. Many building codes will also dictate when to use a specific type.
Another major concern with insulation is with regards to mold and insect infestation. Eliminating the chances of mold or insects is affected by the manner in which the insulation is installed and the proper ventilation of the building envelope. Improper installation of insulation can actually increase the chances of mold and insect intrusion. The professional installer should have the experience to install the insulation properly and explain to the customer the process and reasons.
To learn more about radiant barriers, insulation, and reducing utility bills please visit http://www.utilityimprovements.com.
Article independently authored by Daniel Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements.
Monday, June 21, 2010
Radiant Barriers Can Save Money on Air Conditioning While Still Providing a Comfortable Home
Fiberglass insulation is quickly becoming obsolete because of the fact that it just does not work, or work as well as other types of insulation. It is true that fiberglass insulation has been the most common and affordable type of insulation for homes, office buildings and commercial facilities, but there is a new day dawning. There are now much more effective types of insulation on the market.
The newer types of insulation receiving the most attention in recent years have been spray foam, blown in loose-fill and radiant barriers. Both of these insulation work differently from one another and fiberglass. The insulative abilities of spray foam and radiant barriers are not rated on the same R-value scale due to the manner in which they work.
Unlike fiberglass batting, which only slows the advance of heat passing through the glass fibers, spray foam insulation is a much more effective form of insulation. Because of the density of spray foam, the R-value, or resistance for heat transference, is much higher than any fiberglass insulation. Spray foam is one of the best materials for insulating a new home as it is being built.
If the home construction has already been completed, then spray foam will probably not be an economical method of retroactively insulating a home. In this instance, blown in insulation should be more inexpensive, but will still be labor intensive. There is a relatively affordable alternative.
Retrofitting a pre-existing building with a radiant barrier is usually more inexpensive than most other alternatives. There are different methods for installing a radiant barrier. The most common way is, in essence, to lay the barrier on top of ceiling joists in the attic. Radiant barriers can also be useful by installing under the home in a crawl space. With the reflective surfaces of the radiant barrier, heat from the exterior, which penetrates the roof, is reflected back away from the living quarters.
Radiant barriers have been used in several different applications. The technology is the same means which NASA uses for the astronauts in the space program by allowing the astronauts to retain warmth in the cold of space. While this radiant barrier technology has been in existence for over one hundred years, it was only recently adapted for the residential construction industry in the past couple of decades.
Mold and moisture always needs to be considered when installing a radiant barrier. Some applications may require the use of a perforated barrier for better condensation control. The professional installer in the local region should be able to determine the best way to install the barrier.
For further detail and information on insulation and air conditioning please visit www.utilityimprovements.com.
Article independently authored by Daniel P. Elliott. The content herein may or may not reflect the views and opinions of Ultility Improvements.
Tuesday, June 8, 2010
Save Money on AC - A Radiant Barrier Can Save the Home Owner From Expensive Utility Bills
It is true that the most common culprits causing high energy bills can be faulty door and window seals. The home owner may still have a comfortably cool home interior, however, this just means that the air conditioner system is working that much harder in order to maintain as much of that cooler air inside. Many home owners may not have seen the utility bill shoot up this year yet especially in northern regions, but southern states, such as North Carolina, bill shock is alive and well.
If there is one certainty in this world, it is that utility and energy costs will always be on the rise. Energy costs are due to increase this year in many areas. One of the easiest methods for saving money on utility bills is having a home energy audit performed. It is always a good recommendation for every family and home owner to have a home energy audit performed in order to identify problem areas which can help determine what areas of the home need to be serviced. These tests are not needed as a recurring expense, but usually once to identify the problems.
There are different methods and equipment a company may use to inspect a home. These range from blower doors to infrared sensors. Newer homes built by a mid to upscale builder will most likely be halfway decent in the energy efficient department, however, there is almost always one part of every home which will score lower in energy efficiency; that is the ceiling.
Regardless of the cost or quality of the home, the ceiling is often the area in which there are larger quantities of heat transfer, meaning heat entering the home during summer time or cold air penetrating through the ceiling during winter time. Stuffing fiberglass, blown insulation or spray foam will not always be an inexpensive or effective fix. Radiant barriers, on the other hand, have great advantage of many of these common forms of insulation.
The technology used in radiant barriers is not necessarily new. NASA developed this technology for purposes of saving astronauts from the extreme temperatures found in space. Eventually this technology was adapted for the construction industry.
Radiant barriers work on the premise that it is far better to reflect the heat or cold rather than slow the heat transfer as traditional fiberglass insulation does. Once a radiant barrier is installed properly throughout a home owner's attic, the heat being absorbed by the roof and infiltrating the attic or crawl space is prevented from entering the living quarters by a specialized foil.
It is the foil used in radiant barriers that can create a savings every month on utility bills. There are different types of radiant barriers for different applications. Some may be installed along the underside of the rafters, while it may be recommended that the radiant barrier be installed on top of the ceiling joists. The installers should know which application will be best in order to prevent a build up of moisture from condensation. When the home owner is selecting a company to have a radiant barrier installed, it is perfectly acceptable to ask a lot of questions about which type is being installed.
For more information on saving money on utility bills and home energy efficiency visit www.utilityimprovements.com.
Article independently authored by Daniel P. Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements.
Friday, April 23, 2010
Radiant Barriers - Let Space-Age Technology Lower Your Utility Bills and Increase Your Comfort
Radiant barriers are a relative newcomer to the area of residential insulation. All radiant barriers are based upon space age technology. In 1954 NASA developed this material which we now call a "space blanket". This "sheeting" covered with deposited aluminum helps reduce heat transfer, which is vital in the cold of space. The same technology used by our astronauts has been used in the construction industry for over 20 years and has been receiving more attention in recent years as alternate green building methods have been thrust into the spotlight. Radiant barriers work differently than all traditional forms of insulation.
The most commonly used insulation in the past, and is still frequently used today, has been fiberglass batting, loose-fill blown insulation, spray foam insulation and cellulose. It is possible to add a radiant barrier to an existing house and often recommended. All types of insulation are rated with an R-value, unlike radiant barriers. The R-value is how the manufacturers measure thermal resistance, meaning how well the insulation prevents heat from transferring through the insulation.
Radiant barriers are not assigned an R-value, but two different numbers. The first is an emissivity number. The second number refers to the thermal reflective ability of the barrier. The emissivity, or emittance, refers to how much thermal radiation is given off of the material. The emittance rating will be between 0 and 1. As the emittance rating goes up so does the amount of thermal radiation given. Although related, the second rating is the reflectivity of this insulation. The reflectance rating is also given as a value between 0 and 1 or percentage. These figures, when combined should equal 1 or 100%
While the explanation for the emittance and reflectance ratings is somewhat over-simplified, it is important to pay attention to both numbers. The reflectivity rating should be at least.9, or 90%, while the corresponding emittance rating should be low. These numbers need to be disclosed to the home owner by the manufacturer of the barrier.
While it is quite possible to install a radiant barrier in an attic or crawl space, there are a number of differing methods. The two simplest and most cost effective methods are to secure it to the top side of the roof joists, which support the ceiling, or the bottom of the rafters, which form the slope of the roof. There are particulars, though, to which need to be paid attention.
When installing the radiant barrier on top of the joists, possible condensation during the winter months needs to be taken into account. Most barriers will not allow water vapor to pass through. A simple fix is to make sure the barrier is a perforated one which will allow the barrier to breathe while still being able to reflect the heat away from the ceiling and living quarters below. Another alternative is to verify that the radiant barrier being installed has a substrate which will naturally allow any condensation to pass. The challenge of possible condensation does not apply to the installation of the radiant barrier to the bottom of the rafters. Because of soffit vents along the eaves of the roof or ridge vents, air movement should maintain a condensation free environment.
Radiant barriers used as the sole means of insulation may provide decent results; however, when used in conjunction with existing insulation should enhance the monetary savings of any home owner's monthly utility bill. Due to the region where the home is located, results will vary. Local installers should know which method and what type of radiant barrier will be best for each application.
Go to http://www.utilityimprovements.com for further information.
Article independently authored by Daniel Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements.
Tuesday, April 20, 2010
Radiant Barriers - Let Space-Age Technology Lower Your Utility Bills and Increase Your Comfort
The most commonly used insulation in the past, and is still frequently used today, has been fiberglass batting, loose-fill blown insulation, spray foam insulation and cellulose. It is possible to add a radiant barrier to an existing house and often recommended. All types of insulation are rated with an R-value, unlike radiant barriers. The R-value is how the manufacturers measure thermal resistance, meaning how well the insulation prevents heat from transferring through the insulation.
Radiant barriers are not assigned an R-value, but two different numbers. The first is an emissivity number. The second number refers to the thermal reflective ability of the barrier. The emissivity, or emittance, refers to how much thermal radiation is given off of the material. The emittance rating will be between 0 and 1. As the emittance rating goes up so does the amount of thermal radiation given. Although related, the second rating is the reflectivity of this insulation. The reflectance rating is also given as a value between 0 and 1 or percentage. These figures, when combined should equal 1 or 100%
While the explanation for the emittance and reflectance ratings is somewhat over-simplified, it is important to pay attention to both numbers. The reflectivity rating should be at least.9, or 90%, while the corresponding emittance rating should be low. These numbers need to be disclosed to the home owner by the manufacturer of the barrier.
While it is quite possible to install a radiant barrier in an attic or crawl space, there are a number of differing methods. The two simplest and most cost effective methods are to secure it to the top side of the roof joists, which support the ceiling, or the bottom of the rafters, which form the slope of the roof. There are particulars, though, to which need to be paid attention.
When installing the radiant barrier on top of the joists, possible condensation during the winter months needs to be taken into account. Most barriers will not allow water vapor to pass through. A simple fix is to make sure the barrier is a perforated one which will allow the barrier to breathe while still being able to reflect the heat away from the ceiling and living quarters below. Another alternative is to verify that the radiant barrier being installed has a substrate which will naturally allow any condensation to pass. The challenge of possible condensation does not apply to the installation of the radiant barrier to the bottom of the rafters. Because of soffit vents along the eaves of the roof or ridge vents, air movement should maintain a condensation free environment.
Radiant barriers used as the sole means of insulation may provide decent results; however, when used in conjunction with existing insulation should enhance the monetary savings of any home owner's monthly utility bill. Due to the region where the home is located, results will vary. Local installers should know which method and what type of radiant barrier will be best for each application.
Visit http://www.utilityimprovements.com for additional information on the topic of radiant barrier insulation and saving money on monthly utility bills.
Article independently authored by Daniel Elliott. The content herein may or may not reflect the views and opinions of Utility Improvements.