Wednesday, October 30, 2013

FPE Panels and Zinsco Electrical Panels Could Catch on Fire – Electrical Service Change

Bob Frank, owner of Perfect Electric and Air, discusses in this video the need to have an electrical service change due to the hazards and dangers of having FPE electrical panel, Zinsko electrical panel or Fuse electrical boxes installed in your house. Another important factor that Bob is bringing up is that Citizens Insurance does not [...]

Source: http://www.perfectelectricrepairs.com/2013/fpe-panels-and-zinsco-electrical-panels-could-catch-on-fire-electrical-service-change.html?utm_source=rss&utm_medium=rss&utm_campaign=fpe-panels-and-zinsco-electrical-panels-could-catch-on-fire-electrical-service-change

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Residential Electrical Safety Tips From Professional Electricians – Electrician Broward

There is a lot you can do, as a homeowner, to prevent electrical problems and to avoid potential hazards in your home. The number one residential electrical safety tip, says Bob Frank owner of Perfect Electric and Air, is to be proactive if you detect or suspect of any electrical shortage or problems and call a [...]

Source: http://www.perfectelectricrepairs.com/2013/residential-electrical-safety-tips-from-professional-electricians-electrician-broward.html?utm_source=rss&utm_medium=rss&utm_campaign=residential-electrical-safety-tips-from-professional-electricians-electrician-broward

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Measures to Save Electricity Quickly

Measures to Save Electricity Quickly

 

There are two ways to save electricity quickly. First, efficiency improvements can be made to the energy-using equipment such that consumers receive the same services but with less electricity consumed. (These are sometimes called “technical fixes”) In these situations the end user is barely (or not at all) aware that improvements have been made. In the second case, the

energy consumer takes deliberate measures to reduce energy use through changes in operations or procedure which may also cause inconvenience and result in a loss of service or amenity. These are typically called “behavioral” changes.

 

Technical Efficiency Measures

 

The technical measures to save electricity quickly are similar to those used to save electricity slowly except that they may be implemented with greater intensity by combining them with special subsidies or delivery schemes. Three examples are described below.

 

Retrofits—especially retrofits of large, energy-using facilities—are attractive targets during an electricity crisis. About 8% of industrial electricity is used to make compressed air, much of which is lost through leaks (Rosenberg 2003).

 

The compressed air systems therefore represent a source of major savings. California supported inspections and tune-ups of compressed air facilities in factories. Retrofits of eight factories yielded verified savings of 2 MW.

 

Lighting replacements have been the most frequently used retrofit strategy. Replacing incandescent light bulbs with compact fluorescents (CFLs) was used in Brazil, California, and New Zealand. California consumers installed nearly eight million CFLs during the crisis period, resulting in almost 500 MW of demand reduction (Pang 2003).

 

California cities replaced millions of traffic lights with LED lamps, each saving about 80 watts. California aggressively encouraged consumers to replace older appliances with new units qualifying for the Energy Star endorsement of high efficiency Fuel switching offers large electricity savings.

 

Electricity is often used to heat air or water, especially in the residential sector and in sparsely populated areas.

 

There are numerous opportunities to burn wood, oil, or natural gas directly to obtain the desired heat. Homeowners in Norway and New Zealand, for example, reverted to existing wood stoves and boilers for space and water heating.

 

Fuel switching is an important electricity-savings measure because it removes the homes’ largest electricity-consuming end uses.

 

The greatest benefits from fuel switching will generally occur during shortages caused by cold weather but some measures can also save summer peak power. For example, Brazilians replaced in-line electric shower heaters with gas-fired units, thus saving about 3 kW electrical demand per unit.

 

Effectiveness of Technical Measures

 

Technological modifications require an existing infrastructure in order to deploy the products in a short time, stretching from the manufacturer capable of quickly expanding production to skilled personnel to install them.

 

In most cases, there will not be enough time, or the infrastructure is inadequate, to establish new efficiency improvement and retrofit programs large enough to reduce demand significantly.

 

Norway, for example, addressed its electricity shortage by establishing programs to install heat pumps, energy management systems, and wood pellet stoves.

 

Skilled personnel were overwhelmed and it is unlikely that these measures cut Norway’s electricity demand during the crisis. On the other hand, California already had an established network to deliver its “saving electricity slowly” programs.

 

This network, while still inadequate, was able to rapidly increase activities during the crisis and deliver significant electricity savings. Regions that are vulnerable to temporary electricity shortfalls should consider their programs to “save electricity slowly” as a kind of insurance policy that will also serve as the backbone of a team to save electricity during a crisis.

-
About the Author:
<p>RunGreenPower.com will teach you how to build solar &amp; wind power systems foryour home within a weekend.</p><p>Check It Now: <a rel=”nofollow” onclick=”javascript:_gaq.push(['_trackPageview', '/outgoing/article_exit_link']);” target=”_blank” href=”http://www.rungreenpower.com/2010/09/21/buy-diy-solar-power-kit/”>Why to Buy DIY solar power Kit?</a></p>
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Source: http://reschelectrical.com/measures-to-save-electricity-quickly/

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Check Your GFCI

GFCI receptacles (Ground Fault Circuit Interrupter) are typically found in homes built or remodeled after 1978 and can most often found in the bathroom, garage or exterior outlets. One GFCI may control multiple outlets. It is not uncommon, especially in homes built before 1997, to find the GFCI in the bathroom or garage controlling the [...]

Source: http://blog.atselectricinc.com/2012/08/check-your-gfci-10/

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Home Inspection Electrical Repairs

I remember the first call I received many years ago from a client that was panicked over a home inspector’s report that said she needed to re-wire her entire house that she was selling. Her older home was built before ground wires were required in the electrical cabling. Home inspections are a valuable part of [...]

Source: http://blog.atselectricinc.com/2013/02/home-inspection-electrical-repairs-10/

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How do I know if I have FPE panel or Zinsco panel? Electrician Fort Lauderdale

Bob Frank, owner of Perfect Electric and Air Services located in Fort Lauderdale area, explains in this video how to identify FPE panel and Zinsco electrical panel. There are many potential hazards with these types of panels, including potential fires, and because of it homeowner’s insurance companies are not longer willing to insure homes with FPE and [...]

Source: http://www.perfectelectricrepairs.com/2013/how-do-i-know-if-i-have-fpe-panel-or-zinsco-panel-electrician-fort-lauderdale.html?utm_source=rss&utm_medium=rss&utm_campaign=how-do-i-know-if-i-have-fpe-panel-or-zinsco-panel-electrician-fort-lauderdale

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Tuesday, October 29, 2013

Save on Your Utility Bill

The price of everything keeps going up and it seems like there is no end in sight! We all need to find ways to save the green to be able to keep our budgets afloat. Here are seven ways to save energy and the green from your wallet. Although this is not a complete list of energy savings tips, by implementing these simple changes to your everyday schedule, you'll see immediate savings on your utility bill. Are you ready to save money on your utility bill?

Read More...

Source: http://electrical.about.com/b/2013/10/27/save-on-your-utility-bill.htm

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Lighting 101: Compact Fluorescent Bulbs (CFLs)

When looking into lowering your electricity costs, a popular option is to switch all of the light bulbs in your home or office to compact fluorescent light (CFL) bulbs. Switching to CFLs couldn’t be easier, but it’s not uncommon to wonder: are these bulbs really more efficient than regular incandescent bulbs?

The answer is simple: yes!

Here are some facts about CFLs, according to ENERGY STAR:

  • They use 75% less energy than standard bulbs.
  • They can last for more than 3,000! Compare that to the average 1,000 hours for a standard light bulb.
  • They can create less than 75% less heat than regular bulbs. This means, when you keep your lights on for a long period of time, your house won’t heat up!
  • They can help lower your overall electricity usage and utilities.

The Science Behind CFLs

Creating light by running electricity through a resistive filament, incandescent light bulbs heat the filament to a very high temperature. This causes the bulb to glow and produce an extremely visible light, however more than 98 percent of the energy used is emitted as heat.

On the other hand, CFL bulbs produce ultraviolet light, working by passing electricity through a mercury vapor, exciting the gas. As the UV light hits the white coating inside of the CFL bulb, the coating changes into a light that you can see. CFL bulbs don’t use heat to create light.

Lumens Per Watt

A regular incandescent bulb can produce about 15 lumens per watt while CFL bulbs typically produce 50 to 70 lumens per watt. In other words, you can buy a 15-watt CFL bulb that produces the same about of light as a regular 60-watt regular incandescent bulb.

Incandescent       CFL
40w

=

   10w
60w

=

   13w-15w
75w

=

   20w
100w

=

   26w-29w
150w

=

   38w-42w
250w-300w

=

   55w

General Cost and Lifespan

A 6-pack of GE 60-watt incandescent light bulbs costs approximately $4 while a 2-pack of GE 15-watt CFL bulbs (equivalent to a 60-watt regular incandescent bulb) costs approximately $13. While it’s clearly obvious that regular incandescent bulbs are inexpensive, the typical lifespan is around 1,000 hours versus an average lifespan ranging between 1,200 to 20,000 hours for CFL bulbs.

Savings

Using 2/3 less energy than a regular incandescent light bulb and lasting up to 10 times as longer, replacing your average 60-watt regular incandescent bulb with a 15-watt CFL can save you at least $30 in energy costs over the lifespan of the bulb. On average, you’ll save approximately $6 per year per bulb.

Questions? Feel free to contact us!

Source: http://powergenerationinc.com/lighting-101-compact-fluorescent-bulbs-cfls/

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Wind Generation is the Future Renewable Type of Energy

The future of power generation is going to be greatly influenced by the Wind.Wind is the Types of Renewable Energy that uses a wind turbine to generate the electricity. By the end of 2009 wind generation accounted for the generation of 159.2 gigawatts, which is about 2% of the worlds electricity required. Going forward wind generation has the technical potential to produce 40 times it current electricity generation.

 

There is a wide range of wind turbines available for many suppliers and they fall into two categories just like most other things around the world.  There is a range of domestic wind generators ranging from 100 watts up to 1 Kilowatt and a much wider range of commercial units that range from 600 Kilowatts to 5 Megawatts however wind turbines with the rated output of 1.5 to 3 Megawatts are most commonly used in the commercial wind farms around the world.

 

Regardless of the rated output wind turbines use exactly the same method to generate an electricity supply. Basically they use they do exactly opposite to an electric motor. An electric motor uses a supply of electricity to energize a coil of wire (the armature) that is contained in a magnetic field this causes the armature to turn therefore supplies a source of mechanical energy. Now a wind turbine on the other hand takes it energy source from the wind and using the blades to mechanically turn the armature within the magnetic field. This movement within the magnetic field induces an electrical current in the windings, which can be used to feed into the main power grid or into a battery bank in the case of a stand-alone system.

 

The rate of electricity generated is proportional to the speed at which the turbine turns. Before installing a wind generator you need to do some research into whether or not the location that you live in is suitable. You need to have what as known as clean wind meaning that there is no interference to the flow of wind into the generator like trees mountains builds etc. It is also a good idea to install some wind monitoring equipment and study the amount of wind you can actually take advantage of. You may find that your location is not suitable for a wind generator and you may need to look at other types of renewable energy like Solar Panels.

 

 

The use of wind generators for the creation of electricity is growing across the globe by a staggering rate of 30% per year. The fact that people are using the power of the wind it is making Wind Turbines one of the forefront in the Types of Renewable Energy and as the need for more electricity and the need to reduce greenhouse gases there will be more research and development conducted to better the technology that we are already using to make wind turbines more efficient and cheaper to construct.  As they find was to make them cheaper the more people will choose to use them making it a win win situation for use and the environment.

-
About the Author:
If you would like to learn more about renewable Energy and you are a bit of a DIY kind of a person Have a read about my experiences with different Types of Renewable Energy.
Article Source

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Source: http://reschelectrical.com/wind-generation-is-the-future-renewable-type-of-energy/

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Google’s Green Energy Brag: $375 Million from Taxpayers (or more)

On September 13, 2013, Google announced that it had signed a contract to buy the entire output of the 239 MW Happy Herford “wind farm” that is being developed by Chermac Energy near Amarillo, Texas. The project is expected to begin operation in late 2014.

Undoubtedly Chermac Energy is pleased to have a 20-year contract (purchased power agreement) for the sale of the electricity that will be produced. The Google deal will provide the developer a guaranteed cash stream that will enable project financing. [1]

Undoubtedly, Google is pleased with all the favorable publicity the company has received for being so environmentally committed even though the wind-generated electricity will not be used in a Google facility. Instead, according to Google, the electricity will be sold in the wholesale market and Google will purchase the electricity it needs from the utilities serving its facilities or a wholesale supplier. Google will “retire” the renewable energy credits (REC) resulting from the deal.

The big losers in the Google transaction will be taxpayers, a point that none of the media stories have mentioned. Specifically, taxpayers will have to pick up the cost of the tax breaks that the “wind farm” owner (currently Chermac) will enjoy.

As explained below, the tax burden that will be shifted from the “wind farm” owner to remaining taxpayers will be at least $170 million and probably more.

The most lucrative federal tax break for the project owners will probably be the federal wind “production tax credit” (PTC). This tax break will provide the owners with a tax credit, currently set at $0.023, for each kilowatt-hour of electricity that the “wind farm” produces during the first 10 years of operation. The $0.023 rate applicable during 2013 is subject to upward adjustment for inflation and undoubtedly will be increased during the next 10 years.

Also, the “wind farm” owners will likely qualify also for another lucrative federal tax break known as “accelerated depreciation” which allows the owners to depreciate for tax purposes the entire capital cost of the wind energy equipment over a five-year period, thus providing a significant cash flow benefit.

The actual cost of the PTC to taxpayers can only be estimated at this time since the amount paid depends on the amount of electricity produced as well as the rate at the time of production. The benefit to the owners and added tax burden to remaining taxpayers can be estimated with a few assumptions.

Specifically:

1. The stated capacity of the planned Happy Hereford “wind farm” is 239.2 megawatts (MW) or 239,200 kilowatts (kW).

2. Amount of electricity produced each year will only be known after the fact since this will depend on wind conditions at the site and condition of the turbines. Two large existing “wind farms” in the Amarillo areas had capacity factors of about 45% during 2011, among the highest in the U.S.[2]

3. Assuming that Happy Hereford will achieve a capacity of 45%, the project would produce approximately 942,926,400 kilowatt-hours (kWh) of electricity each year (that is, 239,200 kW capacity x 8760 hours per year x .45 capacity factor = 942,926,600 kWh).

4. Production of 942,926,400 kWh x the 2013 rate of $0.023 would produce an annual PTC break for the “wind farm” owners and annual cost to taxpayers of $21,687,307. At this rate, the tax break would be $216,873,070 over 10 years if production continued at the same level.

5. If the PTC rate is increased due to inflation adjustments to an average of $0.026 during the 10 year operation, the average annual PTC break would be $24,516,086 per year and $245,160,860 over the 10-year period.

Google had earlier announced the purchased the output of two other wind farms:

1. In July 2010, Google announced the purchase of 114 MW of the capacity of NextEra’s Story County II “wind farm” in Iowa. This project began producing electricity in 2009. Assuming a capacity factor of 35%, this project would produce 349,524,000 kWh of electricity per year and earn production tax credits of $8,039,052 in one year at a rate of $0.023 (the 2013 rate) or $80,390,520 in 10 years if the average rate over the 10 years turns out to be $0.023.

2. In April 2011, Google announced the purchase of the output of NextEra’s 100.8 Minco II “wind farm” in Oklahoma. This project began producing electricity in 2011. Assuming a capacity factor of 40%, this project would produce 353,203,200 kWh of electricity per year and earn production tax credits of $8,123,674 in one year when receiving a rate of $0.023 (the 2013 rate) or $91,832,830 over 10 years if the average rate over that time turns out to be $0.026.

As indicated earlier, the actual 10-year cost of the wind Production Tax Credit (PTC) tax break for the owners of the three projects will depend on their actual production and the PTC rates that are in effect during each of those 10 years.

Based on the assumptions outlined above, the three projects signed up by Google probably will cost taxpayers between $370 million and $417 million for the production tax credits received by the “wind farm” owners over the first 10 years of each of the projects’ operation.

Summary

One big winner in the Google purchase of wind-generated electricity from three “wind farms” would be Google because of all the favorable press attention. The other big winners will be the project owners because of the lucrative tax breaks.

The big losers will be taxpayers who must pick up the tax burden escaped by the owners or, perhaps more accurately, their children and grandchildren who will inherit the huge and growing national debt, now about $17 trillion—summing to more than $50,000 per U.S. citizen.

———————-

[1] Chermac Energy is identified by Google as a small Native American-owned company based in Oklahoma. While Chermac is the “developer,” it would not be unusual for the project to be sold to a new owner once all regulatory hurdles ahead of construction are crossed.

[2] A “wind farm’s” annual “Capacity Factor” is determined by dividing the generating unit’s metered production (in megawatt or kilowatt-hours) by the product of the unit’s rated capacity (in MW or kW) times 8760 hours in a year. Capacity factors for “wind farms” depend, of course, on wind conditions in the area. Capacity factors differ significantly from one location to another.

Source: http://www.masterresource.org/2013/10/google-green-play-375-million-dollars/

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Tips: Hiring the right electrician.

How do you know your hiring the right electrician?

Source: http://www.blueskyelectric.net/blog/tips-hiring-the-right-electrician/

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What to Look for in a Los Angeles Electrician

If you are in need of an electrician in the Los Angeles area, you have probably picked up the yellow pages or headed to your favorite search engine to wade through the listings. It is hard to pick the right one. How do you know which Los Angeles electrician to choose? At The Electric Connection, […]

The post What to Look for in a Los Angeles Electrician appeared first on The Electric Connection.

Source: http://www.theelectricconnection.com/look-los-angeles-electrician/

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Measures to Save Electricity Quickly

Measures to Save Electricity Quickly

 

There are two ways to save electricity quickly. First, efficiency improvements can be made to the energy-using equipment such that consumers receive the same services but with less electricity consumed. (These are sometimes called “technical fixes”) In these situations the end user is barely (or not at all) aware that improvements have been made. In the second case, the

energy consumer takes deliberate measures to reduce energy use through changes in operations or procedure which may also cause inconvenience and result in a loss of service or amenity. These are typically called “behavioral” changes.

 

Technical Efficiency Measures

 

The technical measures to save electricity quickly are similar to those used to save electricity slowly except that they may be implemented with greater intensity by combining them with special subsidies or delivery schemes. Three examples are described below.

 

Retrofits—especially retrofits of large, energy-using facilities—are attractive targets during an electricity crisis. About 8% of industrial electricity is used to make compressed air, much of which is lost through leaks (Rosenberg 2003).

 

The compressed air systems therefore represent a source of major savings. California supported inspections and tune-ups of compressed air facilities in factories. Retrofits of eight factories yielded verified savings of 2 MW.

 

Lighting replacements have been the most frequently used retrofit strategy. Replacing incandescent light bulbs with compact fluorescents (CFLs) was used in Brazil, California, and New Zealand. California consumers installed nearly eight million CFLs during the crisis period, resulting in almost 500 MW of demand reduction (Pang 2003).

 

California cities replaced millions of traffic lights with LED lamps, each saving about 80 watts. California aggressively encouraged consumers to replace older appliances with new units qualifying for the Energy Star endorsement of high efficiency Fuel switching offers large electricity savings.

 

Electricity is often used to heat air or water, especially in the residential sector and in sparsely populated areas.

 

There are numerous opportunities to burn wood, oil, or natural gas directly to obtain the desired heat. Homeowners in Norway and New Zealand, for example, reverted to existing wood stoves and boilers for space and water heating.

 

Fuel switching is an important electricity-savings measure because it removes the homes’ largest electricity-consuming end uses.

 

The greatest benefits from fuel switching will generally occur during shortages caused by cold weather but some measures can also save summer peak power. For example, Brazilians replaced in-line electric shower heaters with gas-fired units, thus saving about 3 kW electrical demand per unit.

 

Effectiveness of Technical Measures

 

Technological modifications require an existing infrastructure in order to deploy the products in a short time, stretching from the manufacturer capable of quickly expanding production to skilled personnel to install them.

 

In most cases, there will not be enough time, or the infrastructure is inadequate, to establish new efficiency improvement and retrofit programs large enough to reduce demand significantly.

 

Norway, for example, addressed its electricity shortage by establishing programs to install heat pumps, energy management systems, and wood pellet stoves.

 

Skilled personnel were overwhelmed and it is unlikely that these measures cut Norway’s electricity demand during the crisis. On the other hand, California already had an established network to deliver its “saving electricity slowly” programs.

 

This network, while still inadequate, was able to rapidly increase activities during the crisis and deliver significant electricity savings. Regions that are vulnerable to temporary electricity shortfalls should consider their programs to “save electricity slowly” as a kind of insurance policy that will also serve as the backbone of a team to save electricity during a crisis.

-
About the Author:
<p>RunGreenPower.com will teach you how to build solar &amp; wind power systems foryour home within a weekend.</p><p>Check It Now: <a rel=”nofollow” onclick=”javascript:_gaq.push(['_trackPageview', '/outgoing/article_exit_link']);” target=”_blank” href=”http://www.rungreenpower.com/2010/09/21/buy-diy-solar-power-kit/”>Why to Buy DIY solar power Kit?</a></p>
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Source: http://reschelectrical.com/measures-to-save-electricity-quickly/

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The Importance of Installing Whole House Surge Protection – Residential Electrician Broward

Bob Frank, owner of Perfect Electric and Air Services, is discussing in this video the importance for a whole house surge protection and the couple of different ways of doing it. Whole House Surge Protection is important to protect all valuable electronics and appliances inside of your home in the case of an unexpected electrical [...]

Source: http://www.perfectelectricrepairs.com/2013/the-importance-of-installing-whole-house-surge-protection-residential-electrician-broward.html?utm_source=rss&utm_medium=rss&utm_campaign=the-importance-of-installing-whole-house-surge-protection-residential-electrician-broward

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Monday, October 28, 2013

Wind Generation is the Future Renewable Type of Energy

The future of power generation is going to be greatly influenced by the Wind.Wind is the Types of Renewable Energy that uses a wind turbine to generate the electricity. By the end of 2009 wind generation accounted for the generation of 159.2 gigawatts, which is about 2% of the worlds electricity required. Going forward wind generation has the technical potential to produce 40 times it current electricity generation.

 

There is a wide range of wind turbines available for many suppliers and they fall into two categories just like most other things around the world.  There is a range of domestic wind generators ranging from 100 watts up to 1 Kilowatt and a much wider range of commercial units that range from 600 Kilowatts to 5 Megawatts however wind turbines with the rated output of 1.5 to 3 Megawatts are most commonly used in the commercial wind farms around the world.

 

Regardless of the rated output wind turbines use exactly the same method to generate an electricity supply. Basically they use they do exactly opposite to an electric motor. An electric motor uses a supply of electricity to energize a coil of wire (the armature) that is contained in a magnetic field this causes the armature to turn therefore supplies a source of mechanical energy. Now a wind turbine on the other hand takes it energy source from the wind and using the blades to mechanically turn the armature within the magnetic field. This movement within the magnetic field induces an electrical current in the windings, which can be used to feed into the main power grid or into a battery bank in the case of a stand-alone system.

 

The rate of electricity generated is proportional to the speed at which the turbine turns. Before installing a wind generator you need to do some research into whether or not the location that you live in is suitable. You need to have what as known as clean wind meaning that there is no interference to the flow of wind into the generator like trees mountains builds etc. It is also a good idea to install some wind monitoring equipment and study the amount of wind you can actually take advantage of. You may find that your location is not suitable for a wind generator and you may need to look at other types of renewable energy like Solar Panels.

 

 

The use of wind generators for the creation of electricity is growing across the globe by a staggering rate of 30% per year. The fact that people are using the power of the wind it is making Wind Turbines one of the forefront in the Types of Renewable Energy and as the need for more electricity and the need to reduce greenhouse gases there will be more research and development conducted to better the technology that we are already using to make wind turbines more efficient and cheaper to construct.  As they find was to make them cheaper the more people will choose to use them making it a win win situation for use and the environment.

-
About the Author:
If you would like to learn more about renewable Energy and you are a bit of a DIY kind of a person Have a read about my experiences with different Types of Renewable Energy.
Article Source

share save 171 16 Wind Generation is the Future Renewable Type of Energy

Source: http://reschelectrical.com/wind-generation-is-the-future-renewable-type-of-energy/

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How do I know if I have FPE panel or Zinsco panel? Electrician Fort Lauderdale

Bob Frank, owner of Perfect Electric and Air Services located in Fort Lauderdale area, explains in this video how to identify FPE panel and Zinsco electrical panel. There are many potential hazards with these types of panels, including potential fires, and because of it homeowner’s insurance companies are not longer willing to insure homes with FPE and [...]

Source: http://www.perfectelectricrepairs.com/2013/how-do-i-know-if-i-have-fpe-panel-or-zinsco-panel-electrician-fort-lauderdale.html?utm_source=rss&utm_medium=rss&utm_campaign=how-do-i-know-if-i-have-fpe-panel-or-zinsco-panel-electrician-fort-lauderdale

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Farm Safety...The Harvest Has Begun

Farm safety is a big issue, especially at harvest time. Here's a look at some things to look over while preparing for harvest. Every year farmers deal with many dangers around the farms and fields of America. Slow moving vehicles, moving parts on equipment, and electrical hazards are all a part of their daily routines as they go through their busy routines. Farm safety should be an ongoing practice on the farm and now that the harvest season is upon us, now is as good a time as any to check for potential safety problems. So what should you be looking for?

...

Read Full Post

Source: http://electrical.about.com/b/2013/09/24/farm-safety-the-harvest-has-begun.htm

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10 Tips for Glendora Electrical Work and Your Safety

When you’re considering electrical work you should put safety first. This article gives a few pointers regarding electricity and safety for you, your family and your home.

  1. Never take risks where electricity is concerned. Electricity can cause serious burns, health problems and kill.
  2. If you’re not qualified to do electrical works then get a registered Glendora electrician to give you a quote on the work to be done. Don’t be tempted to have a go at it yourself. It is a good idea to ask around your neighbors, friends and family who they could recommend as being good and reliable. Get several quotes and choose one according to both their ability and your price range.
  3. When you get quotes, ask for references and check them out. You should also ask to see their registration certificates to verify they are qualified and registered.
  4. Have a good look at all the work you may need doing. Check all your plugs and sockets for loose or exposed wires as well as cracked or damaged sockets.
  5. Light fittings are a common source of problems due to the heat generated by the amount of current flowing through them. Check that they are not cracked or brittle.
  6. If appliances are damaged or have electrical cables exposed you should have them tested by an Glendora electrician to make sure they are safe to use. If they’re not safe then you need to determine whether it’s more economical to repair or replace it.
  7. When all your repair work has been done, it is recommended that you cover your sockets with plastic socket covers that are not easily removed by children. This is to prevent children from pushing objects into the sockets and coming to harm.
  8. It is also worth doing a first aid course so that you are able to respond quickly in the event of an electrical accident. Many power suppliers run courses or will be able to advise you where one is available in your area.
  9. Invest in a portable fire extinguisher. Because water is a conductor of electricity you will need to get a chemical extinguisher. You need to have some sort of reminder to check the charge and that it functions correctly on an annual basis.
  10. Teach small children the dangers of electricity and how to be safe. You can use books or DVD’s as an aid to the training which are available on the internet or bookstores.

Article Source: http://ezinearticles.com/?expert=Guillermo_J_Ortiz

 

Source: http://www.accurateelectricalservices.com/CA-Electrician/electrical-contractor/10-tips-glendora-electrical-work-safety

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Carbon Monoxide and Smoke Detectors

 Carbon Monoxide and Smoke Detectors

On Sunday December 30, 2012 three people were taken to the hospital for carbon monoxide exposure.

-The Cincinnati Enquirer-

Clifton Heights - Three People were taken to the hospital for evaluation early Saturday after Cincinnati fire officials said they were exposed to high levels of carbon monoxide at an apartment building in the 100 block of Parker Street.

Firefighters were called to the building around 4am after receiving reports that several people were ill.

Eight occupants were standing outside the building suffering from various symptoms of carbon monoxide poisoning, fire officials said. High carbon monoxide levels were found inside the building, they said.

Information about the conditions of the three occupants were not immediately available.

Duke Energy and the Cincinnati Building Department were called in to seal off all gas appliances in the building. The tenants were not permitted back into their apartments, fire officials said.

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Cooper Electric's electrical service vans are stocked with combo Carbon Monoxide and Smoke Detectors. Carbon monoxide is the #1 cause of accidental poisoning deaths in the US.  The small expense of having Cooper Electric install combo Carbon Monoxide and Smoke Detector, while our electricians are in your home, is an efficient and proactive approach to detecting and combating harmful gases and fire hazards.

Call Cooper Electric today for more details on the combo smoke detectors we have available, and for other information about the options and models.



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Source: http://cooper-electric.net/carbon-monoxide-and-smoke-detectors/

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South Philly curbside parking for a Chevy Volt charger EVSE

Electric Vehicle Charging Equipment (EVSE) for residences usually means a charger on a garage wall, but in densely-packed Philadelphia, garages are rare and curbside parking a precious commodity. Thanks to City of Philadelphia’s EV parking ordinance, residents who install curbside EVSE EV charging equipment can carve themselves a personal reserved curbside parking spot — until EV’s become more common, anyway.

This job was typical, and typically challenging for getting power under existing sidewalk pavement to the EVSE for EV curbside parking location at the curb. Thanks to electronic locator gear, we were able to bullseye a pilot hole rammed from inside the basement foundation wall, and install the bollard and charger with zero disturbance of the public walkway.

Bosch EVSE and bollard mount color scheme worked pretty nicely w/ a white Chevy Volt Bosch_Chevy Volt curbside EVSE2

 



See also:

* EV’s and EVSEs as solution for tough street parking

* Curbside EVSE installations in Fairmount district, South Philly, and around the City of Philadelphia

Licensed Electrician Robert Monk South Philly curbside parking for a Chevy Volt charger EVSE Copyright Robert Monk, 2012

Source: http://www.phillylicensedelectrician.com/south-philly-curbside-parking-for-a-chevy-volt-charger-evse/

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