Top Ten Cost-effective Renewable Energy Systems

  1. A solar thermal system to heat your hot water pays for itself in two to three years depending on your location.
  2. A solar water heating system for your pool or hot tub also pays for itself in two to three years.
  3. Solar photovoltaics to power your home or business, using government incentives, will reduce your monthly electricity costs significantly, in some areas. In some countries, such as Japan, solar is a viable alternative to fossil fuels. In North America, fossil fuels will continue to rise in cost and solar will continue to decline.

  4. A portable solar system for an RV will cost less than a thousand dollars and provide you with power for many years.

  5. Solar panels for remote electricity (electric fence, lights, monitoring station, etc.) are much cheaper than hooking up to the grid.
 6. A solar photovoltaic system for your cottage or remote location can cost much less than connection to the grid.
  7. A geothermal system will pay for itself in five years or less and provide you with heat energy for the lifetime of your home or business.
  8. A backup power system to cover your essential electricity needs, when a power outage strikes.
  9. A wind energy system to power your farm, home or cottage could make your farm energy self-sufficient, in some geographical areas.
  10. A micro hydro power station can provide you with limitless energy, if you have running water on your property.

Top Ten Important Solar Energy Power Tips

1. Whatever solar power system or product you plan to utilize, always ensure that the solar panel faces in the direction of the sun. In the Northern hemisphere the panel must face south and at an angle to the horizontal equal to your latitude plus 15ยบ.

2. Before meeting a consultant regarding the installation of a solar power system, always have on hand a list of all your electrical appliances together with their wattage and the hours of use. Any dealer worth his salt will need to know this information.

3. Before committing to a specific power system always check to find out exactly what the local, state and federal incentives are in your town. All this information can be found at the DSIRE (Database of State Incentives for Renewable Energy) database at http://www.dsireusa.org/

4. Always have a local licensed installer put in your system (but make sure he has experience with Grid connected systems) - they know all the local regulations and will be able to give you valuable information regarding these rules.

5. Keep solar panels clean - even if it means getting up onto your roof once a month. A thin layer of dust or dirt on the glass cover will effectively block off some solar power and the system will operate below its maximum efficiency.

6. When calculating the number of panels you need, do so using winter sunshine hours rather than summer hours - there are roughly twice as many hours sunshine in summer and the wrong calculation could leave you needing to use backup power in winter more often than you would like.

7. In any solar system keep your panels as close as you can to the batteries to avoid losing power in the cable. Always make sure that your panels are not shaded.

8. When planning a solar heating system, always consider the use of solar shades or smart glass to augment your system - their use can save you a lot of energy that might otherwise escape from the house.

9. Many states organize tours of homes that are fully converted to solar. Try to get yourself on one of these tours so that you can see a solar home in its working state.

10.Before installing a solar system try to make your home as energy efficient as possible - install double glazing, add new insulation where possible, replace incandescent light globes with fluorescent etc. By reducing your needs you can reduce the size and cost of the system you're installing. 

Benefits of Going Solar

Why have over 1.5 million Americans invested in solar? Surveys taken over the last ten years confirm that the vast majority of owners (94% or more) consider that investment a wise decision. Consumer investment and satisfaction have spawned a small but growing solar hot water (SHW) industry here in the U. S. that is providing even broader benefits to our nation and has the potential to contribute much more.

Clean and Safe Solar hot water systems in use today produce approximately 1000 megawatts of energy annually. That is the equivalent of two medium-sized coal plants. The life-cycle costs of SHW systems are about the same as gas and far better than electric water heating systems.

Solar energy is pollution-free, an important benefit when the cost of removing pollutants from the environment is considered. For example, a typical SWH system will, over its lifetime, displace 10.5tons of CO2 if replacing a natural gas system, or 71.5 tons if replacing an electric system.



Readily Available Resource The U. S. Department of Energy estimates that Americans consume approximately 2.5 quads of end-use energy annually to produce hot water at a cost of over $20 billion dollars. Solar energy currently provides only a tiny fraction of that demand, but huge portions of our country possess sufficient insolation to produce much greater quantities of energy.

Enough sunlight reaches the earth’s surface each yearto produce approximately 1000 times the same amount of energy produced by burning all fossil fuels mined and extracted during the same period. Sunlight does not have to be explored, mined, extracted, transported, combusted, transmitted — or imported.

Quality, Reliability, Durability

Solar water heating technology, pioneered in the U. S., is the oldest and most developed of all renewable energy systems. Modern solar water heating systems can provide a large portion (40 - 80%) of household hot water demand depending on local climate conditions and the size and type of system. Most systems pay for themselves in four to sevenyears and continue to provide hot water for many years thereafter.

Much of the United States receives abundant sunshine, making solar hot watersystems a very economical investment. This map shows the average daily solar radiation available on a south-facing surface measured in megajoules per square meter each day.



Solar pool heating often provides an even better investment. Payback can be as low as two years and the solar system can extend the swimming season by several weeks without additional cost. Many homeowners have regretted the purchase of a conventional pool heating system after receiving their first utility bill.

Another cost-efficient application for solar energy is preheating ventilation air for commercial and industrial facilities.

The vast majority of U. S. manufacturers of solar equip ment voluntarily comply with national consensus standards devel oped by the Solar Rating and Certification Corporation (SRCC). The SRCC tests and certifies collectors as well as complete systems for performance, reliability and durability. In addition, manufacturers and installers comply with the SRCC’s strict requirements for proper installation, labeling and homeowner information regarding operation and maintenance. Assurances of performance and quality are backed by warranties that in many cases exceed the guarantees of other household appliances.


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China Plans for 30% Renewable Energy by 2050

In the June 2007 issue of the China Renewable Energy and Sustainable Development Report from Lou Schwartz, recent developments in renewable energies in China offer insight into that country's burgeoning challenges between population, energy and the environment.

"Between 2005 and 2030, China will account for 23% of the world's investment in power, spending $1.2 trillion U.S.D. in that period."

-- China Renewable Energy and Sustainable Development Report, June 2007

The report cites that the "Persistent rural poverty in China and periodic power shortages all have impressed upon Beijing that renewable energy must be a large part of China's economy if China is to both complete its economic transformation and achieve energy security."

"Between 2005 and 2030, China will account for 23% of the world's investment in power, spending $1.2 trillion U.S.D. in that period," Schwartz notes. "China's ambitious growth target for renewable energy production will require an investment of approximately 800 billion Yuan (~$100 billion U.S.D.) by 2020. In the long term China has set an objective of having 30% or more of its total energy requirements satisfied by renewable sources by 2050."

Current business opportunities, foreign participation, relevant conferences, and production and consumption are also discussed in this month's China Renewable Energy and Sustainable Development Report.

The in-depth report examines developments across China's renewable energy industry, as seen in these excerpts:

- Solar: "The Chinese government has recently announced that large new buildings will all utilize photovoltaic power generating technology."

- Wind: "Researchers at the Jiangsu Province Macroeconomic Research Institute have advocated that large-scale wind power should be directly used to provide electric power to industries, which are large consumers of power."

- Hydropower: "In 2007 there will be another 500 MW of small to medium sized hydroelectric power generating capacity constructed in Guangxi Province."

- Biomass, Biofuels: "China hasn't yet standardized its macro-economic policies with respect to the bio-diesel industry, but it is now formulating and will soon..."

- Laws and Policies: "These sets of issues include the fact that there are more than 10 million Chinese who do not have access to electric power and the often-spotty access to power among tens of millions of other rural Chinese."


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Renewable energy alone can save India

Dr Prodipto Ghosh, former secretary in the ministry of environment and forests, currently a special energy adviser with The Energy and Resources Institute (TERI), believes the future lies in developing renewable forms of energy.

Dr Ghosh, who played a key role in penning the recently released PMO report on climate change, believes: "Renewable forms of energy, including solar, wind and tidal, must be mainstreamed in order that they can substantially displace oil, gas and coal. Many renewable forms are already being used in niche applications such as street signalling, remote area power supply and village homes."

This turnaround can be best illustrated by the example of wind power. Thirty-five years ago, when the world began to look at wind power, it needed a great deal of government support. In the late 90s, when the global capacity of wind energy was increased to 65,000 megawatts, it became competitive with coal.

Since India receives a great deal of sunshine, the key question is how to make solar energy commercially viable, especially since only one per cent of India’s landmass would be required by solar PVs to meet our electricity needs. Dr Ghosh agrees but states, "A great deal of R&D is required to bring solar energy costs down. A strong government commitment to R&D, matched by an increasing scale of technology, will help kickstart this change."


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Dell Headquarters Uses 100% Renewable Energy

As of April 2, Round Rock, Texas-based Dell is powering 100 percent of its 2.1 million square-foot global headquarters campus with 100 percent green power.

"It's time for our industry to take a lead role in creating a clean energy future," said Paul Bell, president, Dell Americas. "We are challenging every technology company to work with their suppliers and partners in integrating green power and energy-efficient strategies into their operations."

Dell is using all of the power generated from Waste Management's Austin Community Landfill gas-to-energy plant, meeting 40 percent of Dell headquarters’ campus power needs. The remaining 60 percent comes from existing wind farms and is provided by TXU Energy.

The computer company also announced it is increasing green power use for its Austin Parmer Campus, provided by Austin Energy, from 8 percent to 17 percent. Dell also is powering its Twin Falls, Idaho, facility with 100 percent green power, 97 percent of which is wind power and 3 percent solar.

In September 2007, Dell announced it would make company owned and leased facilities "carbon neutral" in 2008 through a strategy of improving energy-efficiency in its operations and maximizing the purchase of renewable power. This commitment is part of the company's climate strategy which also seeks to minimize carbon impact of supplier operations and customer product use.


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Top 10 US Cities for Renewable Energy

Top Ten US City Use of Renewable Energy

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1.Oakland, CA(17%)
2.Sacramento/SF/San Jose, CA (12%)*
3.Portland, OR(10%)
4.Boston(8.6%)
5.San Diego, CA(8%)
6.Austin, TX(6%)
7.Los Angeles, CA(5%)
8.Minneapolis, MN(4.5%)
9.Seattle, WA(3.5%)
10. Chicago, IL(2.5%)

Which of the largest 50 US cities provide citizens with the highest percentage of power produced from renewable energy? SustainLane Government (www.sustainlane.us) determined the percentage of each city’s electricity that comes from renewables such as solar, wind, geothermal, and small-scale hydro energy.




Renewable energy sources produce electricity with no global climate-changing greenhouse gas emissions or regional air pollution that comes from burning fossil fuels such as coal and natural gas. Renewable energy technologies also produce regional jobs while limiting the importation of energy from other nations.

Just over 33 percent of greenhouse gases produced in the United States came from electricity production in 2004, making it the leading category of such emissions over other areas such as transportation (27.9 percent), industry (19.6 percent) and agriculture (7 percent).

The leading cities in renewable energy could have an advantage in any upcoming federal or state regulations aimed at regulating or eliminating greenhouse gas emissions or developing renewable energy standards. If the greenhouse gases that cause climate change get priced, cities with strong renewable energy programs could save a lot of money in the long run and their economies could gain a tax advantage.

Oakland, California led the nation with 17 percent of its electricity being produced by energy sources such as solar, wind and geothermal energy. Oakland gets some of its wind energy power from one of the largest wind power generating facilities in the nation at nearby Altamont Pass.

San Francisco, Sacramento and San Jose tied for second with 12 percent of their electricity coming from renewable energy sources.

California cities rank high in general because of the state’s Renewable Portfolio Standard, which set minimal requirements in 2002 for utility purchases of renewable energy for the state’s electric grid. That standard requires a 20 percent renewable energy total for the state’s utilities by 2020.

Some U.S. cities have also set goals for increasing renewable energy ranging from Chicago’s 20 percent goal by 2010, to Portland, Oregon’s goal of obtaining 100 percent renewable energy by 2010.