Sunday, May 22, 2005

Global Wind Energy Council Launched

Global Wind Energy Council Launched
May 20, 2005


Denver, Colorado [RenewableEnergyAccess.com] Leading wind associations representing the United States, Canada, Europe, China, India, Japan and Australia jointly announced the North American launch of the Global Wind Energy Council (GWEC) at WindPower 2005 in Denver, Colorado this week.

"Wind energy reached a point where it needed a global voice and capability to collaborate on a common agenda."

- Randall Swisher, Executive Director of AWEA and founding member of GWEC GWEC, convened to unify the wind industry and promote wind energy globally, stands united in its call for stronger policy worldwide to support wind energy growth to help lessen the impact of climate change. The organization aims to provide a global forum for the wind energy industry and its representative organizations worldwide.

GWEC operates in more than 50 countries and represents over 1,500 organizations involved in hardware manufacture, project development, power generation, finance and consultancy, as well as researchers and academics.

Randall Swisher, Executive Director of the American Wind Energy Association (AWEA), a founding member of GWEC, said the consideration of this global wind energy collaboration has been in the works since the 2002 global wind conference in Paris.

"Wind energy reached a point where it needed a global voice and capability to collaborate on a common agenda," said Swisher. "The council is in an organizational phase, and the work plan is beginning to evolve."

"Our key objective is to serve our members," Swisher said. "They will actually define the council's specific objectives."

GWEC celebrated its European launch in March in Brussels, and has scheduled additional announcement launch dates -- Australia in August at Sydney's AusWind; Canada in October at Toronto's Can-WEA and China in November at the International Conference for Renewable Energies.

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http://www.gwec.net/

Lake Erie Wind

Harnessing the wind on Lake Erie

Benefits include enhancing Cleveland's image, economy, and environment

The following proposal to create a 'farm' of wind mills that will generate clean, renewable energy off the Cleveland lakeshore was presented by Green Energy Ohio in December 2002. Green Energy Ohio sponsors projects to help Ohioans learn about how renewable energy works in the Buckeye State and showcases examples of real people using real renewable energy system today in Ohio.

In a recent series of meetings, the public has shown overwhelming enthusiasm for positioning Cleveland's waterfront as a unique, quality-of-life amenity, and as a driving force in promoting economic development. Consistent with both of those goals, Green Energy Ohio (GEO) proposes installing several state-of-the-art wind turbines in Lake Erie approximately the same distance from the shore as the Cleveland Water Crib, offering an aesthetically distinctive yet functional addition to Cleveland's lakefront. An offshore wind park would provide a forward-looking image for the city while creating substantial economic and environmental benefits for the region.

A wind park as a Cleveland image

Wind power is clean, quiet, and increasingly cost-effective—and is today the fastest growing source of electricity in the world. Large wind turbine development has origins at Cleveland's own NASA Glenn Research Center where research began in the late 1970s. Each machine today can reach up to 360 feet tall and produce up to two megawatts of electricity (enough for about two thousand homes).

Wind turbines for utility-scale generation of electricity are not new to the United States, and they are quite common in Europe. There are several thousand in operation across the U.S., although they are largely in rural and unvisited areas of the country. Despite the rush to offshore wind development in Europe, however, there are currently no offshore turbines in the U.S.

Capitalizing on extensive European experience, Cleveland could become the leader in North American offshore wind park development. The Cleveland Wind Park would become a signature element of the lakeshore, a potential recreational and educational attraction for both on-shore viewing and boat rides on the lake. It would demonstrate that Cleveland is looking to the future with newer, cleaner technology and provide a positive image in people's minds.

Economic and environmental potential

In addition to the positive image described above, as well as clean, locally produced power, a wind park offers potential economic benefits. The design, fabrication, and installation of the wind turbines would create many jobs in the area, and this development would be a good fit with Cleveland's existing manufacturing infrastructure.

Unlike the major areas where wind turbines are currently being installed in the U.S., Cleveland has a skilled industrial workforce, tremendous metalworking resources, and excellent access to rail, sea, and highway transportation routes. Timken Industries and Lincoln Electric are already suppliers to the wind industry, and it is not difficult to envision other and new manufacturers entering the market locally with the development of a wind park.

Furthermore, installing the first offshore wind farm would encourage not only local suppliers but also local expertise that would be marketable in subsequent projects in the Great Lakes region and beyond. Thus, unlike most of the coal and all of the natural gas used here for electricity generation, which are resources that comes from out-of-state, wind offers the possibility of spending money locally.

Each wind turbine installed also reduces the amount of pollution that escapes into our environment with the use of fossil fuels. Ohio is one of the nation's top polluters, and this has led to health risks, environmental damage, interstate lawsuits, and an enduring image of Cleveland as the place where the river burned. Wind turbines produce pollution-free power, and their installation in Lake Erie may even provide artificial reef habitat for spawning fish. Thus, a wind park would offer a new set of images to associate with Cleveland: graceful wind turbines, new industrial development, and clean power.

Steps toward a wind park

Preliminary research by Green Energy Ohio (GEO) into water depth, soil conditions, bird migration, and development costs indicates that offshore development is feasible in Lake Erie. GEO has begun plans to conduct a wind monitoring project in the lake to provide data regarding the offshore wind resources. Although available meteorological data indicate that offshore wind potential on Lake Erie is excellent, these measurements are taken well below the height of modern wind turbines and are sparse. It is critical that more accurate and complete data be obtained in order to effectively predict turbine performance.

Besides gathering data, it is vital to present the concept of wind turbines as a viable and productive option for the city to both the public and those groups or industries with more specific interests in lakefront development. As a second part of the wind park project, GEO plans to engage the variety of groups with interests in Cleveland's lakefront.

Cleveland has a unique opportunity to embrace a new, effective technology. A wind park on Lake Erie would place Cleveland among the first major cities in the U.S. committed to this clean energy source—providing a positive boost for the city. Most importantly, a wind park would bring important economic and environmental benefits that few other investments could match.

Saturday, May 14, 2005

ALBERONA RESIDENTS SAY GOODBYE TO TAXES THANKS TO WIND-ENERGY

ALBERONA RESIDENTS SAY GOODBYE TO TAXES THANKS TO WIND-ENERGY
(AGI) - Foggia, Apr. 28 - The residents of Alberona, a town in the province of Foggia, will soon be paying no local property, income and waste-disposal taxes as the local town council faces huge returns from the town's second wind-energy plant. The plant, which will be built on nearby hills, is set to change the residents' lives for the better. "The environmental impact of the second plant will be minimal", said mayor Arturo Petti, "whereas the benefits will be enormous for all". The older plant, managed by an Avellino-based company called IVPC, already provides the local council with returns for 150,000 euro every month. But that's nothing compared to the revenues which the 60 new wind-energy towers which will be planted over the next few months are expected to generate. "Each year, our council's budget will be bolstered by some 1.25 mln euro of royalties", said Mr Petti. "It's a whopping figure, which equals our cash returns generated by taxes. And that's only half of the story, as the companies managing both plants will pay an extra 10,000 euro contribution to finance eco-friendly and social programmes. Plus, they will pay us some 1.25 mln euro as a one-off". This will make it possible to reimburse Alberona citizens of their energy bills. The council will also be able to abolish local property, income and waste-disposal taxes. Students and employees will travel to their workplaces or schools for free, and each family whose children attend a local school will receive a 1,000 euro cheque from the council. Further plans include upgrading local infrastructure to benefit artisans and small-sized firms, as well as an old people's cafeteria and a social centre for young and elderly people. In a written commitment with the citizens, the mayor has pledged to carry out all of the above. He says: "We will even abolish waste-disposal taxes and build new roads and a kennel". Hopefully, the new plant will halt the process of emigration, which has long affected Alberona citizens. "For each new child born of an Alberona-based family, the council will pay a 1,000 euro contribution". And maintenance on the plant will be performed by hiring Alberona residents alone. (AGI) .
282003 APR 05

Global wind energy majors make India a manufacturing hub

Global wind energy majors make India a manufacturing hub

CHENNAI: In a boost to its manufacturing capabilities, global wind energy majors including GE, Enercon, and Vestas are turning to India to produce key wind energy components, making the country a sourcing hub for export operations.

GE Wind Energy, which has an assembling unit in Chennai, is exporting components including blades to China and other European markets, while Enercon India is exporting wind turbine generators to Germany, industry officials said.

"A major reason for the trend is lower costs in India and availability of skilled persons," said Mr V V Shanta Raman, secretary, Indian Wind Turbine Manufacturers Association.

Exports of wind energy components and even the entire wind energy equipment (except towers) are taking place from India, he said, adding during the last four years, the exports of such products from India stood in the region of Rs 40-50 crore per annum.


Other leading firms NEG Micon, Vestas RRB are also exporting components, generators and blades produced in India for the overseas markets. Vestas RRB recently announced expansion plans for its Chennai facility, sensing the potential for both domestic and overseas markets.

GE Wind Energy, which got into the sector after the acquisition of Enron's Wind Energy, was looking at India as a manufacturing hub for exports markets, said Mr M Saibaba, its general manager (marketing).

Last week, Spanish wind energy major Gamesa Eolica announced entry into India through a joint venture with Pioneer Asia for establishing a manufacturing facility in the country. - PTI

farmers take advantage of grant to produce wind energy

Sunday, May 1, 2005 6:14 AM CDT
Colwell farmers take advantage of grant to produce wind energy
By MATTHEW WILDE, Courier Staff Writer

COLWELL --- Volatile energy prices undermine the long-term stability of agriculture. A trio of Floyd County farmers said finding a solution was a breeze.

Actually, a good, stiff wind is more like it. Brothers Larry and Dean Tjaden, and Larry's son, Scott, invested $206,000 in a used wind turbine near Colwell last year. The income generated from selling electricity is expected to help offset energy expenses for grain and livestock production.

For years, the Tjadens wondered if farming would provide enough income for both Larry, 62, and Dean, 52, to comfortably retire and Scott to return home to farm full-time.

A few years ago, the Tjadens built three hog confinement buildings and contracted to finish pigs for Heartland Pork of Alden, which eventually was purchased by Christensen Family Farms of Minnesota. The added income helps, but increasing energy bills for the buildings, along with rising diesel fuel costs, continue to eat away at profits.

"The unknown was electrical costs. We had to find some way to control that figure ... making long-term profitability more favorable," said Scott, 34.

Farming the wind seemed like a logical answer. It is a decision they probably wouldn't have made if it wasn't for the Renewable Energy Systems and Energy Efficiency Improvements Program.

Included in the 2002 Farm Bill, the program provides grants to farmers and small rural businesses to help finance renewable energy projects and make farms or businesses more energy efficient. There's $23 million available nationwide this year. Applications are due to the state U.S. Department of Agriculture Rural Development office by June 27.

USDA grants will pay up to 25 percent of a project. A maximum of $500,000 can be awarded for wind, solar or other renewable energy projects. Energy efficiency grants of up to $250,000 are available to upgrade grain drying and heating systems or insulate a hog building, for example.

"The USDA wants to help farmers reduce energy costs and help the country meet its energy needs," said Teresa Bomhoff, Iowa Rural Development rural energy coordinator.

Farming the wind

The 110-foot tall wind turbine with three 60-foot blades certainly sticks out in the mostly flat land and gently rolling hills in northeastern Floyd County. But to Scott, it is a thing of beauty --- especially on a windy day.

During Scott's weekly commutes to the farm --- the industrial chemical representative lives in Cedar Rapids --- the turbine is the first thing he looks for as he approaches Colwell. It is the last thing he sees in the rearview mirror when he leaves.

On a recent Monday, as he caught sight of the tower a few miles away, the wind was relatively calm. The blades were barely turning. The blade tips, which also serve as air brakes, were turned out searching for the wind. The turbine head swivels to help.

"I don't like that," he recalled thinking. Then the southerly wind picked up just as Scott drove up to the tower --- almost on cue. The tips automatically retract as the blades rotate faster and faster.

Whoosh .... Whoosh ... Whoosh. Standing under the monstrosity, it sounded like a huge, spinning carnival ride. Scott opened up a door at the tower's base to check monitoring equipment.

The generator kicked in with a slight clank. Inside the tower, the roar sounded like a jet engine in need of a tune up.

"It feels good every time (you hear that). You know your doing something good," Scott said.

A 9-mph wind generates electricity. Maximum output for the 450 kilowatt-hour unit is reached at 36 mph.

Providing enough electricity to power 80 to 100 homes a year through a clean, renewable resource isn't the main reason behind the family's decision. The main reason was financial.

They expect to make $20,000 to $25,000 a year selling electricity to Dairyland Power, based in Wisconsin. Payback on the unit is estimated at 10 years. The expected life span before a major overhaul is 20 to 25 years.

"The bottom line is we did it for our business to help control our future," Scott said.

Whether a producer is farming the land or the wind, the weather is still the wild card. The Tjadens lost money during relatively calm February.

The Tjadens do most of their own maintenance to save money, which means climbing the tower at times in the winter to chip ice away from wind speed and direction instruments. A 20 mph wind may be blowing from the northwest, but if the unit doesn't think there is wind or is pointed in the wrong direction, it won't generate power.

Program interest

Last year, seven Iowa projects received about $240,000 in program funding. The Tjadens were the only Northeast Iowa farmers to qualify.

"I would like to increase that. Last year half of the money went to three states," said Bomhoff. "We feel Iowa needs that money, too."

Bomhoff thinks the application process, time involved and the mountain of paperwork scared people in the past. This year, the process has been streamlined and a grant writing workshop was recently held.

Bomhoff hopes these improvements, along with success stories getting out to the public, will inspire others to apply. The Tjadens received $45,540 for their project. A southern Iowa couple was awarded $12,540 last year to replace old grain drying equipment, saving them an estimated $16,739.

"We'll do everything we can to work with (farmers), and make them successful," Bomhoff said.

Apparently interest is being generated with farmers around the state. Dan Malloy, sales manager with U.S. Grain Storage Systems, based in Cedar Falls, said he is getting swamped with calls. Last Monday alone, he provided 26 quotes on new equipment.

However, program officials aren't sure if the company's bins that both dry and store grain will qualify. The bins use an aeration system that doesn't need propane to dry corn.

"The way things are going, I'll have to find another salesman," Malloy said. "A lot are wondering if they qualify."

Scott said the grant process isn't easy, but farmers can do it on their own instead of paying hundreds, if not thousands, to a grant writer to do it for them.

The idea for the turbine came during supper one night in December 2003. The partners held an impromptu brainstorming session on how to insure the future of their farms. The three families farm together, but also have some of their own land.

Larry, who is on the board of directors of the local power cooperative, suggested the idea, and Scott ran with it. He researched turbines and found out financial assistance was available.

The initial goal was to meet their own electricity needs by purchasing a much cheaper and smaller turbine, in the 60 to 80 kwh range. However, Scott found a larger unit in California, and convinced his dad and uncle selling power would pay more in the long run.

"It was a tough sell," Scott said, due to the initial capital investment. "But the deal was too good to pass up."

Scott wrote and sent in the grant proposal by July of last year, consuming more than 100 hours. By August, the turbine was delivered. The first kilowatts of Tjaden power flowed into the grid in November.

"To have a thought, put a plant together ... and less than 12 months later it's running... ," Scott said. "That's the most exciting part."

Contact Matthew Wilde at (319) 291-1579 or matt.wilde@wcfcourier.com.

FPL Energy Begins Commercial Operation of Weatherford Wind Energy Center

May 03, 2005 09:02 AM US Eastern Timezone

FPL Energy Begins Commercial Operation of Weatherford Wind Energy Center; Announces Plans to Expand Project by 40.5 MW

JUNO BEACH, Fla.--(BUSINESS WIRE)--May 3, 2005--FPL Energy, LLC, a subsidiary of FPL Group (NYSE:FPL), today announced that it has begun commercial operation at its 106.5-megawatt (MW) Weatherford Wind Energy Center, located near Weatherford, Oklahoma, and plans to expand the project by 40.5 MW.


FPL Energy has entered into an agreement with Public Service Company of Oklahoma, a wholly owned operating subsidiary of American Electric Power (NYSE:AEP), to purchase the entire output from the expansion under a long-term contract.

Today's announcement brings the total capacity of the Weatherford Wind Energy Center to 147 megawatts. Construction on the expansion will begin in the near future and is expected to be completed by year end.

Mike O'Sullivan, senior vice president of development for FPL Energy, said: "We applaud the commitment of PSO to clean, renewable wind energy. We appreciate the support we have received from our customer, the city of Weatherford and the surrounding community on making this project and its expansion a reality."

In June 2004, FPL Energy announced an agreement with PSO for the purchase of 106.5 MW of electricity from the Weatherford Wind Energy Center. Combined with today's announcement, PSO will now purchase the entire output from the 147 MW facility.

The 40.5 MW expansion will be comprised of 27 1.5 MW wind turbines located on approximately 1,400 acres southeast of the original project site.

With today's announcement, FPL Energy has completed 220.5 MW of new wind projects in 2005 and has announced an additional 261 MW that are expected to reach commercial operation by the end of the year. With the addition of the 106.5 MW from the Weatherford project, FPL Energy is currently the largest owner and operator of wind turbines in the world with more than 2,978 net MW in operation.

FPL Energy is a leading wholesale generator utilizing clean fuels such as natural gas, wind, solar, hydroelectric and nuclear to generate electricity. It is the nation's leader in wind energy, with 45 wind facilities in operation in 15 states. It is a subsidiary of FPL Group, one of the nation's largest providers of electricity-related services with annual revenues of more than $10 billion. FPL Group's principal subsidiary is Florida Power & Light Company, one of the nation's largest electric utilities, serving more than 4.2 million customer accounts in Florida. Additional information is available on the Internet at http://www.FPLEnergy.com, http://www.FPLGroup.com and http://www.FPL.com.

Note to Editors: High-resolution logos and executive head shots are available for download at http://www.fpl.com/news/contents/logos.shtml .

Contacts


FPL Energy, LLC, Juno Beach
Steve Stengel, 888-867-3050

Clean Patagonian Energy from Wind and Hydrogen

Clean Patagonian Energy from Wind and Hydrogen

Marcela Valente*


BUENOS AIRES, May 12 (Tierramérica) - A laboratory situated in the southern Patagonia region of Argentina is producing hydrogen from wind energy to supply power to a village -- and prove that it is possible to replace the polluting fuels derived from petroleum.

At the centre of the project in the community of Koluel Kaike, home to 200 people, is a technology that combines wind and hydrogen energy. The goal is to achieve the capacity to meet the energy demands of 500 people by 2008 in this town 2,000 km south of Buenos Aires.

''The aim is that the development commission, homes, schools, cars, farm machinery -- everything in Koluel Kaike, will run on hydrogen,'' engineer Juan Carlos Bolcich, president of the Argentine Hydrogen Association, which is promoting the project, told Tierramérica.

The hydrogen plant is located 23 km from Koluel Kaike, in Pico Truncado, Santa Cruz province, and home to 15,000 people, a third of whom are already supplied by wind-generated electricity, despite the area's wealth of petroleum and natural gas reserves.

Patagonia has extraordinary potential for wind energy due to its strong and constant windy climate. With that power, the windmills of the hydrogen plant produce electricity that feeds an electrolyser.

Through electrolysis, water molecules are broken down into hydrogen and oxygen. The procedure permits the storage of hydrogen, already proven successful as a fuel for engines. The energy can be stored for use during windless days or for distribution within Argentina or sold abroad.

''Hydrogen is on its way to replacing petroleum. Fossil fuels contaminate, they are expensive, but hydrogen is inexhaustible,'' said Bolcich.

The Patagonian energy project is a candidate for inclusion on the list of what are known as Clean Development Mechanisms under the Kyoto Protocol on climate change -- energy technologies that do not emit so-called greenhouse gases that contribute to global warming.

The ''Wind-Hydrogen'' project is the South American chapter of a broader programme of the International Centre for Hydrogen Energy Technology of the United Nations Industrial Development Organisation (UNIDO).

The international programme is under way in small scale projects on five continents.

China is producing hydrogen from hydraulic sources; in Libya the effort aims to complete the cycle with solar energy; in Turkey experts will test using the new fuel in public transportation; and in Oceania hydrogen is being produced from biomass (organic materials).

Hydrogen is the most basic and most abundant element in nature, and its combustion is totally clean. The problem is that hydrogen is not found isolated on its own, but as part of compounds, and production of hydrogen, through electrolysis, requires expending energy.

''The debate is centred on the energy utilised to produce it,'' says Juan Carlos Villalonga, an energy expert with the ecological watchdog organisation Greenpeace.

''If hydrogen is co-opted by the producers of nuclear energy or petroleum, then it will be 'dirty' hydrogen,'' Villalonga told Tierramérica. But the combination of hydrogen production with wind energy is ideal, he added.

''Hydrogen has enormous potential because it is easily stored. It will permit (Argentina's) energy matrix -- which today has only marginal renewable energy sources -- to make a jump towards relying solely on those sources,'' he said.

But how much more expensive than fossil fuels will it be to produce hydrogen from clean energy sources? For the moment it remains a costly venture, although the rising petroleum prices contribute to reducing that gap.

Bolcich believes that the rise in the price of crude and looming depletion of oil reserves are creating a scenario in which wind energy is increasingly competitive. ''By 2009 the two energy sources will be competing throughout all of Patagonia,'' he predicts.

But that future requires local effort and international cooperation.

The objective of the Pico Truncado hydrogen plant is to produce the gas in compliance with all safety regulations, prove that it can work as energy for electrical equipment, vehicles, and industrial machinery, and evaluate the costs involved in its widespread use.

Furthermore, the laboratory will work to optimise each stage of production, experiment with managing the fuel for storage and transport, and train specialised staff in this technology and its inputs.

The project also seeks to disseminate the use of hydrogen as fuel. ''Petroleum production is very concentrated (in the hands of a few), but this would be more democratic because hydrogen belongs to everyone,'' says engineer Bolcich.

(* Originally published May 7 by Latin American newspapers that are part of the Tierramérica network. Tierramérica is a specialised news service produced by IPS with the backing of the United Nations Development Programme and the United Nations Environment Programme.)

Continued Growth Of Wind Energy Industry In The United States

Annual Rankings Demonstrate Continued Growth Of Wind Energy Industry In The United States
Posted by Patriot on 2005/5/13 7:24:47 (341 reads)


Annual Rankings Demonstrate Continued Growth Of Wind Energy Industry In The United States
Most Populous States, Recognized Corporate Leaders Continue to Hold Top Rankings in 2004; New Players Emerging
Washington, D.C. – On the eve of WINDPOWER 2005, expected to be the wind industry’s largest-ever annual conference and exhibition in North America, the American Wind Energy Association (AWEA) today released its second annual industry rankings of wind energy development in the United States. The rankings, which include the top states for wind energy development, the top suppliers of wind energy turbines and the top developers and purchasers of wind energy, provide a useful perspective on the size and scope of the American wind industry.

At the end of 2004, wind energy facilities in 30 states totalled 6,740 megawatts of energy capacity from coast to coast, producing enough power for the equivalent of 1.6 million households.

The annual industry rankings tell the rest of the story, providing a standard reference point for the burgeoning growth of the wind industry in the United States. Wind continues to be one of the fastest growing energy sources in the world and in the nation. The entrance into the U.S. market of major new players signals that pace will continue in 2005: in the past eight months, international power plant developer AES, global power generation giant Siemens, and international financial industry leader Goldman Sachs each entered the American wind energy business with purchases of major wind energy companies.

“The American wind industry is an economic, environmental and energy success story,” declared AWEA Executive Director Randall Swisher. “Despite ongoing challenges facing the industry such as the imminent expiration of the federal production tax credit, the relevance of wind energy to the nation’s energy mix is increasingly being recognized by the nation’s economic and energy leaders. This year’s industry rankings demonstrate that wind energy remains on a track that would allow it to provide six percent of the nation’s electricity by 2020.”

The rankings (as of December 31, 2004) include the following:

States with most wind energy installed, by capacity (MW):

#1 California - 2,096 MW
#2 Texas - 1,293 MW
#3 Iowa - 632 MW
#4 Minnesota - 615 MW
#5 Wyoming - 285 MW

Largest wind farms operating the U.S. (MW):

# 1 Stateline, Oregon-Washington - 300 MW
# 2 King Mountain, Texas - 278 MW
# 3 New Mexico Wind Energy Center, New Mexico - 204 MW
# 4 Storm Lake, Iowa - 193 MW
# 5 Colorado Green, Colorado - 162 MW
# 5 High Winds, California - 162 MW

Leading owners of wind energy installations in the U.S. (MW):

#1 FPL Energy - 2,758 MW
#2 Shell Wind Energy - 315 MW
#3 AEP – 311 MW
#4 enXco – 298 MW
#5 PPM Energy - 225 MW

Utilities/power companies that buy the most wholesale wind power (MW purchased):

#1 Southern California Edison purchases the output from 1,025 MW of wind power
#2 Xcel Energy purchases the output from 884 MW
#3 Pacific Gas & Electric Co. purchases the output from 680 MW
#4 PPM Energy purchases the output from 606 MW (for resale)
#5 TXU purchases the output from 580 MW

As AWEA reported in its first quarter market release in April 2005, the installed capacity number for 2005 could increase by as much as 35% over 2004. The current forecast calls for up to 2,500 megawatts of new wind power capacity installed in the United States this year, which would bring the national total to more than 9,000 megawatts of clean, renewable, wind-derived electricity.

However, the pending expiration of the wind energy production tax credit at the end of 2005 threatens to stall this remarkable growth in 2006 and later years. With ever-increasing demand for energy, and wind’s energy, economic and environmental benefits, the need for clear, consistent policies to encourage wind’s continued development remains urgent.

“The industry has proven over the past several years that it can ramp up quickly to meet demand, as evidenced by the figures in our second annual industry rankings of wind energy development,” explained Swisher. “With stable policy support, investments will flow on an even larger scale into the U.S. wind energy market. We hope that Congress will recognize that approving a long-term extension of the production tax incentive is key to extending this remarkable record of accomplishment.”


AWEA, formed in 1974, is the national trade association of the U.S. wind energy industry. The association’s membership includes turbine manufacturers, wind project developers, utilities, academicians, and interested individuals. More information on wind energy is available at the AWEA web site: www.awea.org

Indian wind energy firm plans $230 mln IPO

Indian wind energy firm plans $230 mln IPO - sources

Wed May 11, 2005 1:46 PM GMT+05:30
BOMBAY (Reuters) - Indian wind power company Suzlon Energy Ltd. plans to raise up to 10 billion rupees ($230 million) through an initial public offer (IPO) of shares, bankers and shareholders told Reuters on Wednesday.

"The filing is expected by the end of this month," said one source, who declined to be identified.

Sources said the offer of fresh shares would represent 25 percent of Suzlon's expanded equity capital, valuing the company at as much as 40 billion rupees.

The private equity arm of Citigroup Inc. and investment firm ChrysCapital jointly own about 15 percent of the company.

Morgan Stanley's Indian unit and Bombay-based Enam Financial Consultants are lead book runners and CLSA's local arm is co-bookrunner for the IPO.

Another banker helping the IPO said the offer was expected to be launched in July. The company has annual sales of between 7 billion and 8 billion rupees, he added.

Wind power has been gaining currency due to fears of global warming and rising energy prices. Worldwide, installed capacity rose by some 8,000 megawatt (MW) last year, to nearly 48,000 MW, one-third of that in Germany.

Denmark's Vestas is the world's biggest wind-turbine maker.

At end-January, India had an installed wind energy capacity of 2,488.13 MW, which accounted for just 2 percent of the total power capacity of the energy-starved nation.

Coal-fired thermal power stations account for about 65 percent of the total capacity.

According to industry estimates, India needs an additional 100,000 MW of power in the next 10 next years with an investment of $100 billion to meet soaring demand of an expanding economy.

India has allowed foreign companies to invest in fully owned operations in the energy sector to overcome a peak electricity shortage of about 12.2 percent.

Monday, April 25, 2005

China Offshore Wind Power

China Eyes Turbines at Sea to Boost Wind Power

Mon Apr 25, 6:47 AM ET Science - Reuters



BEIJING (Reuters) - Wind turbines stationed up to 30 miles offshore and in waters up to 120 feet deep could be a key part of China's renewable energy program in two or three decades, a senior industry official said Monday.



The sea-based farms would be ideally situated to supply clean power to the populous and booming east coast area, without competing for space wanted for farming or urban development.


"Offshore wind sites are close to the main electricity load centers in eastern China, so offer great potential for future energy supply," Shi Pengfei, vice-chairman of the Chinese Wind Energy Association, told a conference.


"I am confident that in 20 to 30 years a very significant proportion of the wind power in China will be off-shore."


China's top state planner, Ma Kai, said Saturday the country was looking for more varied energy supplies to reduce its reliance on coal such as nuclear, wind and hydro power.


Coal accounted for about 67 percent of energy consumption and 76 percent of energy production in the world's fastest-growing major economy, he said.


Sea winds could be harnessed to generate an estimated 750 gigawatts, although few projects were under way now, Shi said.


This would be around 70 percent higher than the country's total installed generating capacity at the end of 2004 and maybe three times the potential of onshore sites.


China aimed to have 20 gigawatts of wind-generating capacity installed by 2020, equivalent to around 1.0 percent of annual electricity consumption at that time, Shi said.


At present the industry is limited by its high costs, with the price of power generated by a 100 megawatt wind project over two times higher than the equivalent from a coal generator.


The majority of equipment -- around four-fifths -- is imported and few Chinese firms make larger turbines.


However the government has set up wind power concessions to lure investment and know-how, guaranteeing a fixed price for power, as well as help with infrastructure like access roads.


Shi said he expected the cost of wind-generated power to move closer to that from coal-burning plants when there is around 3000 MW of market demand, and the country has set a generating target of 4000 MW by 2010.


Unlike European wind power leaders like Germany and Spain, China is not obliged under the Kyoto treaty to cut its emissions of greenhouse gases like carbon dioxide.


But the government is concerned by the effects of air pollution, much of it from coal-burning power plants, on health and is keen to boost clean energy.


A senior government adviser said recently that acid rain affected around one third of the country.

Sunday, April 24, 2005

International Energy Project of the Year

News Release:
www.aeecenter.org
April 15, 2005 Press Release

Energy, Utilities, Power, Environmental News

International Energy Project of the Year to be Awarded to Canadian Wind Turbine Project

Atlanta, GA : The Association of Energy Engineers’ (AEE) awards committee announced that it was awarding the International Energy Project of the Year to the WindStorSM Wind Turbine Project implemented at the University of Quebec. The formal awards ceremony will take place at the 27 th annual World Energy Engineering Congress, September 14-16 th, 2005 in Austin, Texas.

Albert Thumann, Executive Director of the Association of Energy Engineers indicated, “The Association of Energy Engineers (AEE) and its members are innovators. We are always looking for new technologies and energizing techniques to be more energy efficient, to be more environmentally friendly, and at the same time be economically viable. Each year our awards committee reviews dozens and dozens of projects to find leading edge technologies and projects that will have a positive impact on our lives. We are excited at the potential that micro-wind energy has to be a part of the mix of next generation energy production.”

About the Project:

The WindStorSM Wind Turbine Project at University of Quebec was nominated for consideration by Richard J. Costello, President of Acela Energy Group. According to Mr. Costello, “What makes this project so important to the Energy Engineering Profession is its ability to be sited in places never perceived possible, and in many, many locations that have not been economic to date due to insufficient wind or the low price received for power placed directly onto the transmission grid.” Information provided by Acela Energy to the awards committee had many positive results. Technology verification testing began immediately after completion of the installation and commissioning of the WindStorSM wind turbine on October 29, 2004 at the Université du Québec en Abitibi-Témiscamingue in Rouyn-Noranda, Quebec, Canada. Since that date, the WindStorSM wind turbine has successfully:

performed as designed at all rotational speeds, including its 54 RPM maximum
demonstrated that audible noise at the base of the turbine tower is nearly absent at all rotational speeds
demonstrated that turbine construction, control systems and sensor effectiveness have the ability to smoothly navigate resonance frequencies without affecting power production and safety
operated through all weather conditions, including snow and ice, and in temperatures as low as minus forty degrees (-40C/F), confirming design specifications to generate power in extremely adverse weather conditions
Operating Turbine at University of Quebec

About AEE:

The Association of Energy Engineers is a non-profit membership organization founded in 1977. Today, AEE has over 10,000 members in 67 countries. AEE provides training and networking opportunities in a variety of disciplines including energy efficiency, HVAC & building systems , distributed generation, lighting, utility deregulation, facilities management, project engineering, end user consulting, energy services & the environment. AEE offers several programs: seminars, conferences, and certification programs. The annual awards include the following categories: ENERGY ENGINEER OF THE YEAR, CORPORATE ENERGY MANAGEMENT, ENERGY PROFESSIONAL DEVELOPMENT, ENERGY MANAGER OF THE YEAR, ENERGY PROJECT OF THE YEAR – U.S., ENERGY PROJECT OF THE YEAR – INTERNATIONAL, And ENVIRONMENTAL PROJECT OF THE YEAR. Complete 27 th WEEC show information, exhibitor profiles, conference agenda can be found at:www.energycongress.com

For more information, contact Ruth Whitlock at AEE

Phone: 770-447-5083

Fax: 770-446-3969

Email: whit@aeecenter.org

Prince Edward Island Wind-Hydrogen Village Project

Hydrogenics and PEI Energy Corporation Partner to Develop Prince Edward Island Wind-Hydrogen Village Project
Friday April 22, 1:01 pm ET
- $10.3 million project
- the world's first of its kind
- awarded funding through h2EA program


NORTH CAPE, Prince Edward Island, April 22 /PRNewswire-FirstCall/ -- Prince Edward Island Premier Pat Binns and Randall MacEwen, Vice President, Corporate Development of Hydrogenics Corporation (Nasdaq: HYGS - News; TSX: HYG - News), announced today that Hydrogenics and Prince Edward Island Energy Corporation will lead a consortium of industry and government partners to develop Canada's first wind-hydrogen village demonstration - the Prince Edward Island (PEI) Wind-Hydrogen Village Project. This multi-faceted initiative will demonstrate, in real-life and in real-time, how wind energy and hydrogen technologies can work together to offer clean and sustainable energy solutions across a wide range of applications.

As announced in an Industry Canada release today, the $10.3 million project is receiving an investment of $5.1 million through the Hydrogen Early Adopters (h2EA) program of Technology Partnerships Canada. The Government of Prince Edward Island will invest $2.9 million in the three-year project. This includes $2.5 million in earnings from the North Cape Wind Farm and $425,000 from Prince Edward Island Business Development.

Hydrogenics' reputation as a leader in the development of hydrogen technologies, and the Province's national leadership in developing wind energy facilities, provide a strong foundation on which to build a wind-hydrogen village in Prince Edward Island. The home of the Atlantic Wind Test Site (AWTS), Canada's only national wind test site, PEI now draws more than five per cent of its electricity from wind energy at North Cape, which is the site of today's announcement and the primary site of the project.

"Promoting and demonstrating wind and hydrogen technologies is a key component of our Government's Renewable Energy Strategy," said Prince Edward Island Premier Pat Binns. "We believe hydrogen technology will become an important part of the economy, and we are pleased to be a partner in this ground-breaking project. The Prince Edward Island Wind-Hydrogen Village will advance PEI's reputation as a centre for research and development of renewable energy technologies and contribute to our objective to reduce the province' s reliance on imported fossil fuels, achieve a measure of energy self- sufficiency, and protect our environment for future generations."

Noting that the company's reputation as a world leader in the development of hydrogen technologies is unparalleled, Premier Binns added that he is pleased to have Hydrogenics Corporation serve as project manager for the Prince Edward Island Wind-Hydrogen Village.

"We are excited to be involved in this landmark project with an excellent roster of partners, both private and public," commented Randall MacEwen, Vice President of Hydrogenics Corporation. "With our diverse portfolio of hydrogen and fuel cell products and expertise, we believe we can bring the kind of comprehensive leadership to this project that will ensure its success. The PEI Government continues to demonstrate vision and leadership toward lessening PEI's dependence on imported power through the deployment of clean wind technologies. This next logical step - marrying up wind with hydrogen as a means of storing energy - has real potential to further reduce dependence on imported power, promote local economic development and promote environmental sustainability. PEI's strong wind regime, geographic size, political will, skilled work force and committed academic community make PEI a perfect location to demonstrate and deploy wind-hydrogen technologies. We believe this initiative will position PEI to become a model for future wind-hydrogen deployments globally, particularly for island and off-grid communities."

Over the course of the three years, the Prince Edward Island (PEI) Wind- Hydrogen Village Project will demonstrate solutions for a range of energy applications, including the installation of a hydrogen energy station, a hydrogen storage depot, and a wind-hydrogen and wind-diesel integrated control system to power the North Cape Interpretive Centre Complex, the Atlantic Wind Test Site, as well as other homes and buildings in the North Cape area. Subsequent phases are expected to include a hydrogen refueling station in Charlottetown to support the refuelling needs of up to three full-service hydrogen shuttle buses used in Charlottetown and the Charlottetown-North Cape corridor, as well as the deployment of fuel cell utility vehicles and the expansion of the wind-hydrogen village to provide energy for additional buildings and facilities, including at least one farm operation. The final phase of the project is expected to involve the introduction of a hydrogen- powered tour boat.

Further details on this project and its partners will be released in the coming months.

About Prince Edward Island

Located on Canada's east coast, Prince Edward Island's size, excellent wind regime, and strong commitment to renewable energy make the province an ideal location for leading edge energy research and development. The PEI Energy Corporation is a Crown corporation responsible for pursuing and promoting the development of energy systems and the generation, production, transmission and distribution of energy in Prince Edward Island.

About Hydrogenics

Hydrogenics Corporation (http://www.hydrogenics.com) is a leading global developer of clean energy solutions, advancing the Hydrogen Economy by commercializing hydrogen and fuel cell products. The company has a portfolio of products and capabilities serving the hydrogen and energy markets of today and tomorrow. Hydrogenics, based in Mississauga, Ontario, Canada, has over 300 employees based in operations in North America, Europe and Asia.

New technology blows away existing generators

New technology blows away existing generators
Release date: 18 Apr 2005

Wind Power Ltd of Suffolk, a Camrow client who won one of the last ever DTI SMART Awards, will next month unveil the results of their project at the Clean Energy Show in London.

On show will be the Feasibility unit that demonstrates technology that literally blows away the existing technology used for large-scale wind farms.

The technology, vertical axis, as opposed to the current horizontal axis, has been specifically chosen to take advantage of offshore wind patterns where there is 'clean' wind just above wave height. This avoids the need to put the generator on top of a high expensive mast as is needed with the current technology.

'Current offshore wind farms use technology that was designed for operation on land,' said Camrow Director, Richard Moseley who has been working with Wind Farm Ltd for over four years.

'This makes it more expensive offshore than onshore, hence the dash by the generating companies to cover the countryside with propellers. The Aerogenerator will be a large V with the generator at the bottom hence at sea level.

'This means it can be on a floating platform, avoiding the high costs of the civil engineering required to build large towers offshore. Even more important is that the capacity is not restricted in the same way, indeed Wind Power Ltd will be unveiling designs for a 8MW unit at the Clean Energy Show, twice the capacity of the largest horizontal axis currently operating.

'The combination of floating base, low level generator, and increased generating capacity, means that offshore wind generated electricity can be cheaper than that current generated onshore', he added.

'This is truly disruptive technology, made even more so by it needing a change in the psyche of the industry which believes horizontal axis died when a previous test machine fell apart in Camarthen Bay 14 years ago. However that, like the current technology, was a land-based design.

'Technology has moved on in both areas, the limitations in capacity of horizontal axis machines are now known, whilst there is a much better understanding of materials of construction and offshore wind patterns'.

*******

Richard Moseley
Camrow Ltd
Phone 01223 813234
Fax 01223 813234

Wednesday, April 06, 2005

Maui gets largest wind farm in state

Maui gets largest
wind farm in state
The energy project calls for
20 turbines at Ukumehame
By Gary Kubota
gkubota@starbulletin.com

WAILUKU » The largest wind energy project in the state is expected to be completed on Maui in the first quarter of 2006.

Kaheawa Wind Power LLC plans to build a $65 million wind farm at Ukumehame on the southern slopes of the West Maui Mountains.

"It's truly a milestone," said Mike Gresham, president of Makana Nui Associates, the minority partner. "We're excited for what it means for our Maui community as well as the state."

The new wind farm is expected to produce about 9 percent of Maui Electric Co.'s total power, bringing to 15 percent the amount of energy provided by renewable sources.

Hawaiian Commercial & Sugar Co., which burns primarily bagasse, provides about 6 percent of Maui Electric's total power.

Gresham said that if the cost of oil continues to remain the same or increase, consumers on Maui will receive a savings in electrical cost, because the price of wind energy will remain relatively stable.

Kaheawa Wind Power, whose majority owner is UPC Wind of Newton, Mass., plans to build 20 General Electric wind turbines, each capable of producing up to 1.5 megawatts of power.

The wind turbines, with a blade height of roughly 280 feet, will be built on leased state land at Kaheawa pastures from an elevation of 1,600 feet to 3,000 feet, he said.

Based on previous studies done for the state, Gresham said the wind turbines will not be viewable from many locations on Maui.

MECO has entered into a 20-year agreement to buy wind power at about 8 cents per kilowatt hour, with a clause that allows a 1.5 percent annual increase for inflation, he said.

The "avoided cost" of a new petroleum-fired generator is about 12 to 13 cents per kilowatt hour, the company said.

Maui Electric President Ed Reinhardt said assuming the wind power was used starting January, his company might see a reduction in the use of about 168,000 barrels of diesel oil in 2006.

Reinhardt, whose company has about 58,000 residential and business customers, said while wind energy is not regarded as "firm power" that can be relied upon 24 hours a day, the projected energy produced by Kaheawa Wind is equivalent to providing electricity to 11,000 homes.

"It's going to be good for us here," Reinhardt said. "We want to get more renewable energy on Maui."

Gresham said based on a prior study, he anticipates the wind will be as robust as any mainland location.

He said the partnership expects to employ four to six technicians.

The interim and permanent financing was arranged by HSH Nordbank, a New York subsidiary of a German bank, and the electrical contractor is ABB Inc. Construction.

The development of wind energy at Ukumehame began in the mid-1990s and control of the venture has changed a few times.

Other wind projects in the works in the state include a 10.5-megawatt wind farm at Hawi and a 12.5-megawatt addition to a 7-megawatt facility at South Point on the Big Island.

Makana Nui Associates is a partnership of developer Kent Smith and electrical engineering consultant Hilton Unemori.

PPM to build New York wind farm

PPM to build New York wind farm

Mark Milner
Wednesday April 6, 2005
The Guardian

Scottish Power's US arm, PPM Energy, is to invest $160m to build a windfarm in upstate New York.
The announcement follows a ruling by the state of New York to require 25% of energy consumption to come from renewable resources by 2013.

PPM Energy will be working on the Maple Ridge development with Zilkha Renewable Energy - a Houston-based firm that is being acquired by the investment bank Goldman Sachs.


The 120 turbine facility, which should be completed by the end of the year, will quadruple the installed windfarm capacity in the state.
Scottish Power said the development would be immediately earnings enhancing. "The Maple Ridge wind farm begins the promised expansion of US wind business in the eastern United States and will help us continue [towards] our goal of becoming the leading US renewable energy company," chief executive Terry Hudgens said.

FPL Energy Announces New Wind Farm in Texas

April 05, 2005 09:01 AM US Eastern Timezone

FPL Energy Announces New Wind Farm in Texas

JUNO BEACH, Fla.--(BUSINESS WIRE)--April 5, 2005--FPL Energy, LLC, a subsidiary of FPL Group, Inc. (NYSE:FPL), today announced it will build, own and operate a new wind farm in Texas, the Horse Hollow Wind Energy Center, to be located in Taylor County, Texas.


The 220.5-megawatt Horse Hollow Wind Energy Center will be comprised of 147 1.5-megawatt wind turbines spread over a 22,500 acre site approximately 15 miles southwest of Abilene. Initial site work on the project is underway with full-scale construction expected to begin in the next few weeks and be completed no later than December 2005.

The company said it expects to spend more than $15 million on the purchase of goods and services throughout the region during construction. In addition, the company said up to 130 construction jobs will be created during the peak construction period.

"The Horse Hollow project is another important milestone in the disciplined growth of our wind portfolio," said Jim Robo, president of FPL Energy. "This project will bring an important new source of clean, renewable power to the region and provide a significant economic impact to the area in the form of taxes, new jobs, lease payments to landowners and the purchase of local goods and services."

The Horse Hollow project is FPL Energy's second wind project in Taylor County. The company recently began commercial operation at the 114-megawatt Callahan Divide Wind Energy Center located approximately 12 miles southwest of Abilene. The company's previously announced 106.5-megawatt Weatherford Wind Energy Center in Oklahoma is under construction and expected to begin commercial operation during the second quarter 2005. Together these projects represent 441 megawatts of the company's goal of adding up to 750 megawatts of new wind to its portfolio in 2005. When the Weatherford and Horse Hollow projects are complete, FPL Energy will own and operate nearly 3,200 net megawatts of wind generation.

FPL Energy is a leading wholesale generator utilizing clean fuels such as natural gas, wind, solar, hydroelectric and nuclear to generate electricity. It is the nation's leader in wind energy, with 44 wind facilities in operation in 15 states. It is a subsidiary of FPL Group, one of the nation's largest providers of electricity-related services with annual revenues of more than $10 billion. FPL Group's principal subsidiary is Florida Power & Light Company, one of the nation's largest electric utilities, serving more than 4.2 million customer accounts in Florida. Additional information is available on the Internet at http://www.FPLEnergy.com, http://www.FPLGroup.com and http://www.FPL.com.

Note to Editors: High-resolution logos and executive head shots are available for download at http://www.fpl.com/news/contents/logos.shtml .

Contacts


FPL Energy, LLC, Juno Beach
Steve Stengel, 888-867-3050

American Superconductor wins deal with Hawaiian wind farm

American Superconductor wins deal with Hawaiian wind farm
04/06/2005 10:43 AM

Westborough-based American Superconductor Corp. and partner GE Energy, a business of the General Electric Co., have been picked by Hawi Renewable Development LLC (HRD) to provide a voltage control system for the Hawi Wind Farm project located near Upolo Point on the island of Hawaii.

The installation will include two of AMSC’s proprietary D-VAR voltage regulation systems and equipment from GE to meet standards required to connect the wind farm to the power grid. The solution provides fast dynamic voltage support during electrical faults on the utility grid — thereby allowing the wind turbine generators to ride through low voltage events on the grid they are serving.

Construction of the HRD wind farm, which will generate 10.56 megawatts of electricity, is scheduled to be finished in November 2005. The wind farm will use 16 wind turbine generators.

No financial details of the deal with HRD were released.

At press time AMSC stock was trading at $10.39, up 37 cents from yesterday’s close.

Sunday, April 03, 2005

Zoltek Concludes Large Wind Energy Contract

Zoltek Concludes Large Wind Energy Contract

Zoltek Companies Inc. has concluded a long-term strategic supply agreement with Fibreblade S.A. (a business unit of Gamesa Eolica) of Pamplona, Spain.
Under the agreement, Zoltek expects to provide Fibreblade with $65 - $75 million worth of carbon fibre and carbon fibre materials over the first three years of the contract for the manufacture of advanced large- scale rotor blades for wind turbine generators.

"We are extremely excited that Gamesa has selected Zoltek as a key supplier and partner," said Zsolt Rumy, Zoltek's Chairman and Chief Executive Officer. "Zoltek has now secured a significant portion of the fast-growing global wind energy market for our commercial, high-performance carbon fibres. Globally, the generation of electricity through wind energy is expanding nearly 20% per year in terms of newly installed megawatts. We stand to gain a larger and larger share of a growing pie as a result of a clear trend in wind energy toward longer and longer blades to increase power generation capacity. Carbon fibre is now recognized as the only material that will do the job in supporting the development of larger and more powerful generators. It is lightweight and it meets the stiffness requirements of longer and longer blades, providing significant advantages in reducing the cost of other components in wind turbine systems."

Gamesa Eolica is the world's second largest supplier of wind turbines with carbon fibre reinforced blades and the market leader in several important regional European market sectors. Gamesa has recently announced production expansion plans in the United States and continues to serve an ever-increasing portfolio of customers around the world.

"This agreement represents the culmination of several years of extensive work in supporting the testing and qualification of our Panex 35 fibre with European customers and partners," noted Tim McCarthy, Vice President Sales and Marketing. "Fibreblade has been a particularly innovative and forward-thinking partner to work with and we look forward to our continued cooperation. The wind energy market is strategic for us because of its positive growth outlook. The leaders of the wind energy industry have now confirmed via thorough technical and commercial diligence what we at Zoltek have been convinced of all along -- that Zoltek's Panex 35 fibre offers the best price / performance value available on the market today and Zoltek is positioned best to supply the rapidly expanding needs of this market sector."

In order to meet demand for carbon fibre for wind energy and other commercial carbon fibre applications, Zoltek has undertaken a three-stage capacity expansion program. Zoltek is nearing completion of the first stage of this program, the re-start of the 2,500-ton carbon fibre production lines at its Abilene, Texas facility and the activation of additional precursor capacity at its facility in Hungary used as the essential raw material in carbon fibre production. It also began the second stage of the installation of two new carbon fibre lines in Hungary along with further additions to precursor capacity. The third phase of the expansion program will commence in 2006, when Zoltek is planning to double capacity again -- 9,000 tons (18 million pounds) of carbon fibre per year, in order to meet the levels of demand represented by existing contracts and orders for the year 2007.

WWW Link: http://www.zoltek.com

Saturday, April 02, 2005

The New Mexico State Land Office signs up another wind farm

Land Office signs up another wind farm
NMBW Staff
The New Mexico State Land Office will sign an agreement on Friday to lease 4,320 acres of state trust lands for a wind farm in Roosevelt County.

The Land Office will lease the property to Podoma Wind Power LLC of La Jolla, Calif.

The company will build 120 wind turbines on the farm, which will produce enough electricity to power 41,600 homes. The wind farm will be called the San Juan Mesa Wind Project, the Land Office said in a news release. Approximately 50 of those turbines will be on State Land Office land. The rest will be built on private property. The wind farm will be located about 65 miles northeast of Roswell.

New Mexico is already home to five wind farms, three of which have turbines on state trust lands.

The State Land Office manages nine million acres of land in the state. Proceeds from its leases go to fund public education in New Mexico.

New generation of wind farms at Altamont Pass

New generation of wind farms arises
Technology allows more electricity at lower price
By Matt Carter, STAFF WRITER

LIVERMORE — Using technology imported from Denmark, a new wind farm in the Altamont Pass could generate more electricity at a lower price than its predecessors while killing fewer birds of prey.
But because of regulatory and economic hurdles, wind-farm operators aren't rushing to modernize all 5,200 aging wind turbines in the hills between Livermore and Tracy.

Obstacles to "repowering" — replacing wind turbines installed in the 1980s with more modern machines — include concerns about bird deaths. To claim lucrative federal tax credits, companies seeking to modernize their wind farms also must negotiate new agreements to sell their power to Pacific Gas & Electric Co.

The first wind-farm operator to move forward with a repowering project in the Altamont Pass is Altamont Power LLC, a partnership between Florida-based FPL Energy and Global Renewable Energy Partners. GREP is a subsidiary of wind-turbine manufacturer Vestas Wind Systems of Denmark.

The new Vestas V47 turbines — brought on line in December by Altamont Power at the company's Diablo Winds facility — use the latest materials, design innovations and computer automation to squeeze more electricity out of the wind.

Company officials say fewer than three dozen new wind turbines at the Diablo Winds facility on Altamont Pass Road have the potential to produce more electricity than the 169 old FloWind turbines they replace.

Although the new wind turbines are bigger than the "egg beater" FloWinds, they're also more sophisticated.

The fiberglass blades of the 31 Vestas turbines sweep through the air up to 258 feet off the ground, supported by steel towers weighing nearly 45 tons. Wind gauges on each machine measure the direction and speed of the wind, adjusting the angle of 77-foot-long blades to match conditions.

Like a bicyclist changing gears to climb a steep hill, adjusting the "pitch" of the blades helps the Vestas turbines generate electricity at a wide range of wind speeds — from 6 to 56 mph. Many older turbines only produce electricity when wind speeds top 12 to 14 mph.

Stengel said Altamont Power has invested about $25 million in the Diablo Winds project. The wind farm has an estimated 20-year life span.

To be eligible for a federal tax credit, Altamont Power was required to renegotiate its contract to sell power to PG&E.

PG&E, which had been paying 6.8 cents per kilowatt hour under a contract that was set to expire in 2016, negotiated a reduced rate of 4.3 cents per kilowatt hour for the Diablo Wind project. That rate will be allowed to rise with inflation to a maximum of 5 cents per kilowatt hour in 2016.


Altamont Power and other wind farm operators may be less willing to negotiate new contracts for older wind farms that are still generating electricity. Those wind farms rely on other models of obsolete wind turbines, and parts to repair them are more readily available.

FPL Energy operates wind farms with 220 megawatts of generating capacity — nearly half of the total in Altamont Pass — but hasn't submitted plans to modernize other facilities. (One megawatt of generating capacity is enough to supply about 1,000 homes, but most wind farms produce no more than one-third of their rated capacity).

PG&E is looking for ways to meet state mandates to obtain 20 percent of its electricity from renewable sources such as solar and wind energy by 2010. But the total generating capacity of wind farms in the Altamont Pass has been capped at 583 megawatts until wind farm operators can prove they can reduce bird deaths.

A recent study estimated that 881 to 1,300 birds of prey are killed each year in the blades of wind turbines in the Altamont and on the power lines that carry the electricity they generate.

State and federal wildlife officials, environmental groups, and the California Energy Commission hope repowering projects will curb bird deaths by reducing the total number of wind turbines in the Altamont by a factor of seven or more.

In the future, power lines will be placed underground — the Diablo Winds project eliminated eight miles of overhead power lines — and new turbines will be sighted in ways to make them less lethal to birds.

Although the Diablo Winds project was allowed to proceed under the auspices of a 1998 Environmental Impact Study, some other repowering projects will require separate studies that can take a year more.

Buena Vista LLC is working with officials in Contra Costa County on an environmental study of a proposal to repower a 37.5 megawatt wind farm on Vasco Road. The company already has begun scrapping 179 old wind turbines, which it proposes replacing with 38 modern machines.

Additional obstacles to repowering include the need to renegotiate leases with ranchers who own the land the wind farms use, and potential disputes between wind farm operators. Rows of larger wind turbines can create wakes that have the potential to reduce power generation at turbines downwind.

al obstacles to repowering include the need to renegotiate leases with ranchers who own the land the wind farms use, and potential disputes between wind farm operators. Rows of larger wind turbines can create wakes' that have the potential to reduce power generation at turbines downwind.

al obstacles to repowering include the need to renegotiate leases with ranchers who own the land the wind farms use, and potential disputes between wind farm operators. Rows of larger wind turbines can create "wakes" that have the potential to reduce power generation at turbines downwind.