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Making your own solar panels is actually easier than you may think.  There are plenty of guides online that will walk you through the entire process of building and installing your own solar panels step by step.  Some of these guides even have videos that will show you the steps firsthand, in detail.

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The guide we recommend using is Earth4Energy.  This is one of the best and most popular DIY solar energy guides on the market.  All of the glowing Earth 4 Energy reviews support this top-notch product, which comes highly rated by people who have used the Earth4Energy guide book. It gives you everything you need to make your own solar panel boards – and much more.  You’ll get easy to follow instructions and plenty of pictures and diagrams that will show you exactly, from start to finish, how to make your own solar panel modules, and how to install and wire your new solar panels.

It even comes with an entire video series for even more detailed instructions, as well as a solar calculator, so you can calculate how many solar panels you need for your homemade solar cell energy needs.


As a side bonus, if you’re interested in utilizing wind power along with the homemade solar energy from your solar panels, Earth4Energy also gives you an excellent DIY guide to build your own wind turbine.  You’ll get step by step plans, wind maps, and everything else you need to build and install a wind turbine on your own. This sought-after bonus guide is worth $49 on its own, but they give it to you free, along with some other great bonuses.



Not only is the Earth4Energy guide very affordable, it’s also risk-free.  Earth4Energy is a well-respected company that backs their outstanding product 100%. They have a “Love-it-or-it’s-free guarantee.  You get 60 days to use the solar plan guide, risk free. If you’re not happy for any reason, you can get a full refund, no questions asked.  So, you have absolutely nothing to lose (except your monthly power bills).

If you want to get started and build your own solar panels at low-cost, or if you just want to learn more, you can click on the link below to check out the official Earth4Energy website.

>>Click Here To Visit Earth4Energy<<

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A wind turbine is a device that converts kinetic energy from the wind into mechanical energy. If the mechanical energy is used to produce electricity, the device may be called a wind generator or windmill.China Wind turbine factory, buy china cheap price 150W to 20KW wind turbine here.

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Product Description

2000W Wind Turbine, 2000Watt Wind Turbine

2000W Wind Turbine, 2000Watt Wind Turbine

2000W Wind Turbine, 2000Watt Wind Turbine   2000W Wind Turbine Introduce: 2000W wind turbine is permanent magnet generator set, the rotor is made of neodymium iron boron which is rare earth permanent magnetic material, whose high magnetism rais…

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30000W Wind Turbine, 30KW Wind Turbine   30KW Wind Turbine Introduce: 30000W wind turbine is permanent magnet generator set, the rotor is made of neodymium iron boron which is rare earth permanent magnetic material, whose high magnetism raises …

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500W Wind Turbine, 500Watt Wind Turbine   500W Wind Turbine Introduce: 500W wind turbine is suitable for electrical equipments with total power beneath 500W,such as: TV,computer,washing machine,electrothermal blanket,electric lights etc,and  wa…

20000W Wind Turbine, 20KW Wind Turbine

20000W Wind Turbine, 20KW Wind Turbine

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10000W Wind Turbine, 10KW Wind Turbine

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A wind generator is a device that generates electrical power from wind energy.Wind generators have traditionally been wind turbines, i.e. a propeller attached to an electric generator attached to appropriate electronics to attach it to the electrical grid or to charge batteries.Wind generators outside Post, TexasRecently, however, a reciprocating non-turbine wind generator, the Windbelt, has been invented. It promises to reduce the cost for generating small amounts of power tenfold. The plans can be found freely available on the web.Wind generators come in many different sizes and shapes from vertical models, horizontal and even rooftop models.

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Product Description

2KW Wind Generator, 2000Watt Wind Generator

2KW Wind Generator, 2000Watt Wind Generator

2KW Wind Generator, 2000Watt Wind Generator 2KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4. Matched…

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30KW Wind Generator, 30000Watt Wind Generator

30KW Wind Generator, 30000Watt Wind Generator 30KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4. Matc…

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20KW Wind Generator, 20000Watt Wind Generator

20KW Wind Generator, 20000Watt Wind Generator 20KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4. Matc…

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5KW Wind Generator, 5000Watt Wind Generator

5KW Wind Generator, 5000Watt Wind Generator   5KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4. M…

3KW Wind Generator, 3000Watt Wind Generator

3KW Wind Generator, 3000Watt Wind Generator

3KW Wind Generator, 3000Watt Wind Generator   3KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4. M…

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1KW Wind Generator, 1000Watt Wind Generator

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10KW Wind Generator, 10000Watt Wind Generator

10KW Wind Generator, 10000Watt Wind Generator   10KW Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 3m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing. 4…

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500W Wind Generator, 500Watt Wind Generator

500W Wind Generator, 500Watt Wind Generator   500W Wind Generator Feature: 1. Magnetic saturation generator design, 20 years designed lifetime. 2. 2-2.5m/s start-up wind speed under Low–torque start-up technique. 3. Mechanical automatic yawing….

 

Wind Turbine Accessories is including Wind Turbine DC motor, Wind Turbine Blade, Wind turbine Power, Wind Turbine Inverter, Wind Turbine Controller, Wind turbine Tower etc.

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Product Description

Wind Generator Inverter, Wind Turbine Inverter

Wind Generator Inverter, Wind Turbine Inverter

Wind Generator Inverter, Wind Turbine Inverter   Wind Generator Inverter Feature: 1. Controlled by CPU, pure sine wave output, it can drive different kinds of household appliances and industrial appliances. Such as tube lights, refrigerators, a…

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Wind Generator Controller, Wind Turbine Charge Controller

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China Windmill Grid Tied Inverter technology Grow Fast

In recent years, China’s solar and wind power capacity growth, but net percentage is not high. Address these renewable energy access has become a social consensus.

Wind energy converter wind turbine is one of the key components, its role is given to the instability of wind power into AC power and stability, in line with the requirements of power quality AC power to the grid. Wind energy converter to control the complexity of the requirements of high reliability and stability as the main features of its technical route and wind power machine to match the technical route, there are for double-fed wind turbine doubly-fed wind energy converter and apply in direct-drive, semi-direct drive full power generator such as wind energy converter. Internationally renowned wind energy converter manufacturers, including American Superconductor, ABB, Converteam, Siemens and Emerson and so on.

PV inverter grid  system is the key equipment, and its role is to provide solar panels and batteries into alternating current of low voltage DC reverse, using supplied AC load, which directly affects the reliability of the photovoltaic power generation system stability. PV power inverter size is generally divided into groups according to the string type and plant type two categories, of which the former is mainly used in residential and small commercial roof the roof, which is mainly used in large commercial roofs, industrial plants and large-scale ground PV power plant. Global PV inverter industry, duopoly pattern showing the characteristics of the SMA, Power one of the two main suppliers, Fronius, KACO, Refu Electronik ranks followed more than a dozen companies, and the share of the basic approach, including Hefei Sunshine power.

Although the domestic PV inverter industry started late in the foreign counterparts, but over the past two years, the rapid development of domestic industry as a whole. According to statistics, the company has been certified by the Golden Sun about 41. However, the size of the domestic production of most companies is still small, is expected to gain first-mover advantage of the company’s market share in the future will be long-term maintenance. At the same time, domestic wind energy converter has just kicked off the process, there is still a long way to go. Early start of the business and the whole plant or a wind power plant co-operation with the machine converter companies will have a certain competitive advantage.

wind power development focus on anti-corrosion technology
wind power development focus on anti-corrosion technology

In today’s increasingly tense energy, wind power generation as efficient and clean, more and more people of all ages. With the national authorities will be offshore wind power deployment planning and construction work started, offshore wind power development in China officially opened the curtain.

Offshore wind erosion of the electrode is easy

After 10 years of development, the world’s offshore wind power technology has matured, has entered the large-scale development phase. While China is still in its infancy, has a huge space for development. On the one hand, China has very rich offshore wind resources. Statistics show that China’s offshore wind energy resources 10 meters deep about 100 million kilowatts, 20 m water depth offshore wind energy resources of about 300 million kilowatts, 30 m water depth offshore wind energy resources of about 490 million kilowatts. On the other hand, the economically developed eastern coastal areas, energy shortages, the development of rich offshore wind energy resources will effectively improve the energy supply. Therefore, the development of offshore wind power has become an important strategy for China’s energy content.

But in fact, China is still a lack of experience in building offshore wind, offshore wind resource measurement and assessment of domestic and offshore wind turbine has just started, the construction of offshore wind power system is also urgent need to establish technical specifications. One anti-corrosion technology offshore wind power a lack of standards is a serious problem.

The reporter learned that, due to sea with a relatively high salt, corrosion of the equipment is very serious. The wind turbine is different from the offshore drilling platform, at any time by corrosion repair, offshore wind turbine due to its special geographical environment and technical requirements, high maintenance costs.

Renewable Energy National Energy Board Shi Lishan, deputy director of that offshore wind turbine is the biggest problem facing the anti-corrosion, he said: “Compared with the onshore wind, offshore wind power operating environment is more complex and technically demanding, construction is more difficult for fans is the biggest problem in terms of corrosion resistance to salt spray and sea power transmission and distribution of these technical difficulties can only be resolved in practice. ”

Qingdao Marine Corrosion Institute of Iron and Steel Research Institute, deputy director of music administration that the appalling conditions in which the sea fans, sea, and over some parts below the surface in different environments, the required anti-corrosion technology is different, so vulnerable to corrosion of offshore wind power, and anti-corrosion technology is more complex. He explained to reporters: “offshore wind turbine platform for supporting the lower part of reinforced concrete structures, the work focuses on anti-corrosion protection of steel corrosion; sea salt over some of the main subject, ocean air, splashed corrosion, therefore, offshore wind turbine corrosion more complex and requires sub-section, targeted for. ”

Integration needs to keep up with the anti-corrosion technology

Song told reporters that government, anti-corrosion technology development cycle is not too long, from the individual anti-corrosion technology, China’s R & D level and international level is the basic synchronization. Currently lacking is the integration of technology, namely, how the various anti-corrosion technology into a device. ”

This reporter has learned, the current domestic wind turbine for offshore corrosion protection is not related to standards or requirements. Song government, said: “offshore wind turbine corrosion, is a system problem, for each part of the unit, in the design, material, airtight, and should take into account the corrosion problem.”

He believes that the current offshore wind energy power development has just started, so the anti-corrosion technology in all aspects of the development is lacking. He said: “foreign uniform standards for all aspects of anti-corrosion technology are provided. Abroad this system has been more complete, while the country is still lacking.” Automobile manufacturing, for example he vividly explained to reporters corrosion technology integration. He said, in a foreign country, if you want to design a car, taking into account the future will be sold or inland sea, its steel and coating will be appropriate to make a different design. Sources of different designs in steel corrosion in different environments experimental data, based on experimental data, car manufacturers will eventually choose economical and corrosion-resistant design. This is China’s offshore wind turbine corrosion development is a good reference, because China’s vast territory, north and south have different climate, so the required anti-corrosion technologies are also different.

Shi Lishan, in talking about China’s offshore wind power technology development when he said: “Only through the practice of summary, to find how to manage the government should be, how to protect the safety of some of the specifications, it is too early.”

Qu government also believes that the introduction of offshore wind power now requires national standards for premature corrosion. He said: “The general standards definitely need to go through the trial, identify problems, solve the problem in several stages, and finally the formation of more mature things, the formation of standards for your reference, we are still in early stages.”

 

Hydraulic Tower For Wind Turbine Generator

Tower is a significant part for the wind turbine generator system (WTGS). Currently, there are two kinds of tower available on the market for WTGS. One is cable tower, and the other is free stand tower. Cable tower enjoys the advantage of being installed manually, while the disadvantage lies in taking huge room, which has an effect on aesthetics. Free stand tower is endowed with the advantages of being beautiful and firm. However, a crane is essential for installation and maintenance. No matter what kind of tower available on market now, the expenditure for installation and maintenance would take a large part in the total cost of purchasing WTGS, which indirectly increases users’ expenditure and postpones the period of cost recovery. Statistically, in some developed countries, the maintenance expenditure per year charged by laying down the tower would be that of the tower itself.

Innovative towers developed are classified into two, namely, conventional tower and hydraulic tower system. Conventional tower enjoys the advantages of taking small room and handsome exterior. Foremost, three segments can be inserted into one for transporting so that the transportation cost will be lessened dramatically. Compared with the conventional tower in addition to the above advantages, problems such as inconvenient maintenance and large maintenance expenditure can be solved by the appliance of the hydraulic tower. With the appliance of hydraulic tower system, tower erection for installation and maintenance can be easily accomplished by one person. The hydraulic tower system can be applied to wind turbine generator with weight (including generator & blades) less than 500KGS and swept area less than 50 square meters.

With the appliance of innovative towers, the benefits of investing wind turbine system can be achieved with a relatively short period, which is favorable to the end users.

 

How to DIY your own Wind Turbine Generator?

You’ve managed to gather all the parts you will be utilizing for your wind turbine, you have also estimated your wind turbine expenditure, and you are now fully determined to construct your own windmill. How do you assemble all the items you have gathered?

Here’s how you do it in 9 easy steps:

Stage 1: Procure or buy all the components on either eBay or from a hardware shop in your area. You’ll need a DC power motor, metallic sheets, PVC pipe, hub, tower, deep-cycle battery, charge controlling device, dump load, AC inverter and sufficient nuts as well as bolts to connect the three blades to the tower.

Phase 2: To start with, cut the PVC pipe into a 3 ft long piece, and then cut the pipe into four pieces ” 3 will be used for blades, and one shall be a spare. You will have to shape each blade so that one side tapers into a 2 point. The blades should of approximately 6 ft long ” they could be smaller, but surely not smaller than 4 ft in which case they may not spin easily.

Part 3: Now, make holes on the narrow end of your blades so that their positions align with the holes in your hub.

Stage 4: You may then weld or bolt a coupling in the middle of your hub, and then join the 3 blades to the hub and then attach the hub to the motor shaft ” small steel bars measuring 12 by 2 should be fine in most cases.

Phase 5: Align the blades and the hub by marking each blade with a number and making sure that the same blade does not land at the bottom every time ” if so, then you may have to scrape some metal off your connected metal bars.

Part 6: Take the DC motor shaft and slide it into the hole in the middle of your hub, also making sure that the hub itself is securely fastened.

Part 7: Now, look at your tail shaft to figure out the height and make a hole through the top part of the tower, above where the tail shaft’s upper end will go.

Phase 8: Then, chop the actual tail shaft from your metal which should be approximately 3-4 ft long and attach it to the tower with a flat bracket.

Phase 9: Now, make sure that your hub and the blades are joined to your tower and then wire the remaining components together. Remember to connect the DC motor to the charge controller and then connect that to the battery, and the battery to the AC inverter, which in turn goes into your utility box. The thickness of cable you will require would depend on the materials you used ” if you need a professional opinion, call an electrician.

Like I mentioned above, this is just a tip of the iceberg regarding DIY wind turbines – just enough so that you may understand how to build a simple turbine yourself.

The wind turbine described above should generate 300-500 watts of power, assuming that your mean wind velocity is a minimum of 10-20 mph.

 

How Do the Wind Turbine Generator Work?

Wind turbines have become more and more popular in these years as a new energy. Most of people know a little about the wind turbines technology.  In this news, Aeolos will tell you how wind turbine works?

Types of wind turbines

Modern wind turbines could be divided into horizonal axis wind turbine and vertical axis wind turbines.

Sizes of wind turbines

Small wind turbines are from 300w to 100kw.  Mid wind turbines are from 100kw to 1Mw.  Large wind turbines are more than 1Mw.

Components of wind turbine

Anemometer:

Measures the wind speed and transmits wind speed data to the controller.

Blades:

Most turbines have either two or three blades. Wind blowing over the blades causes the blades to “lift” and rotate.

Brake:

A disc brake, which can be applied mechanically, electrically, or hydraulically to stop the rotor in emergencies.

Controller:

The controller starts up the machine at wind speeds of about 8 to 16 miles per hour (mph) and shuts off the machine at about 55 mph. Turbines do not operate at wind speeds above about 55 mph because they might be damaged by the high winds.

Generator:

Usually an off-the-shelf induction generator that produces 60-cycle AC electricity.

Pitch:

Blades are turned, or pitched, out of the wind to control the rotor speed and keep the rotor from turning in winds that are too high or too low to produce electricity.

Rotor:

The blades and the hub together are called the rotor.

Tower:

Towers are made from tubular steel (shown here), concrete, or steel lattice. Because wind speed increases with height, taller towers enable turbines to capture more energy and generate more electricity.

Wind direction:

This is an “upwind” turbine, so-called because it operates facing into the wind. Other turbines are designed to run “downwind,” facing away from the wind.

Wind vane:

Measures wind direction and communicates with the yaw drive to orient the turbine properly with respect to the wind.

Yaw drive:

Upwind turbines face into the wind; the yaw drive is used to keep the rotor facing into the wind as the wind direction changes. Downwind turbines don’t require a yaw drive, the wind blows the rotor downwind.

These components maybe different in the small wind turbines and large wind turbines.  Large wind turbine has more components than the small one.

 

Introduce of Wind Turbine Generator Tower
Skywing provided three types of towers for different model wind turbines: Guyed tower, Lattice tower and Mono tower. Each tower has its own advantage and disadvantage in the cost, efficiency, installation and maintenance. So it is difficult to say which one is the best tower for a wind turbine system. You may choose the package of our recommend tower and wind turbine or choose the tower according to your local situation.

Introduce of Wind Turbine Generator Tower

Skywing Wind Turbine Guyed Tower:

Guyed tower was made by narrow steel pipe and supported by guy wires. It is usually used for 500w to 5kw wind turbines.  The height of guyed tower is usually from 6m to 18m.

Advantage: the lowest cost solution and easy installation.

Disadvantage: not easy climbable for inspections or repairs. Require more land than mono pole tower.

Skywing Wind Turbine Lattice Tower:

 



Lattice towers were made by welded steel profiles. It is usually used for 3kw to 20kw wind turbines. The height of lattice tower is usually from 12m to 36m.

Advantage: Medium cost solution and easy maintenance.

Disadvantage: Perceived unattractive and not easy to delivery.

Skywing Wind Turbine Mono Tower

Mono pole tower also named free standing tower.  It was made by steel pipe with a free standing design. It was used for 3kw to 50kw wind turbines. The height of mono tower is usually from 12m to 36m.

Advantage: Good look and best quality

Disadvantage: Most expensive solution and not easy to maintenance.

Note:

Local rules may impose height restrictions to wind towers: rules imposing maximums of 40 or 60 feet / 12-18 meters are common, which may have a negative impact on the electric power generated by wind turbines. Pay attention to local rules before you choose Skywing wind turbine towers.

 

 

China 2011 TOP Index Rank of Wind Power

Influential commentators in Japan, Germany, Russia, the US, China, Spain, Italy, Thailand, Yemen and numerous other nations have all weighed in on the need to de-emphasise nuclear and focus on renewables in the wake of the Japanese tsunami and nuclear disaster. So concludes the Ernst & Young 2011 All Renewables Index.

At the same time, recent unrest and the risk of further conflict in the Middle East and North Africa region have highlighted crucial issues around energy supply security and oil price volatility. European governments have slashed budgets and reduced feed-in tariffs (FiTs), causing solar cell prices to fall while solar manufacturers’ margins are being squeezed due to rising silicon and other commodity costs.

RANKINGS OVERVIEW

 

China has climbed to its highest ever score in the Index, principally by diversifying its renewables portfolio through an increased focus on offshore wind and CSP.

While China surpassed the US to become the world’s largest energy consumer in 2010, environmental targets set out in the 12th Five-Year Plan include an increase in the proportion of energy from non-fossil fuels to 11.3 percent by 2015, from the current 8.3 percent. To meet this target, China says it intends to build at least 70 GW of new wind farms and 5 GW of new solar farms.

According to the report, the latest statistics indicate that, in 2010, the China Development Bank (CDB) made around $35 billion in low-interest credit available to Chinese renewables companies. This compares with the $4 billion of grants and $16 billion in loan guarantees awarded to clean-tech companies in the US.

China overtook the US at the end of 2010 to become the world leader in wind power, having installed around 16 GW in 2010 or almost half of global installations – taking cumulative installed capacity to 42 GW. This is contrasted with an additional 5 GW installed in the US last year and a total of 40 GW.

However, China ranks second globally in terms of grid-connected capacity; more than a third of wind capacity had yet to be connected to the national grid at the end of 2010.

China’s PV market also experienced strong growth in 2010, installing around 1 GW and taking cumulative capacity to 2.6 GW. The latest figures also show that the US now has 17 CSP plants, totaling 507 MW. The DOE has set a goal of reducing the cost of solar to $1 per watt (parity) in the next decade.

India continues to slowly climb the rankings, leaving Germany in fourth position, a sign that developers are favouring countries with high economic growth. In order to meet the government’s ambitious plans for wind and solar, Suzlon Energy intends to invest $1.3 billion to develop 1 GW of new wind in Gujarat by 2013.

Germany has dropped a point due to the solar benchmarking exercise. In addition, the long-term horizon for wind power growth in Germany has been revised down as the industry matures and space for new development becomes limited.

Italy has dropped two points in light of the new decree on phased reductions to FITs for solar PV from June 2011 onward.

In the UK, the results of the Department of Energy and Climate Change’s “fast track review” of FITs for solar PV has resulted in dramatic cuts for installations over 50 kW, due to come into effect on August 1, 2011. This, coupled with additional market uncertainties, have caused the UK to fall three points.

France has slipped a point due to continued uncertainty over its tendering system for large-scale solar. First Solar Inc. and EDF Energies Nouvelles SA have placed a 120-MW project on hold until more clarity has been unveiled.

The fall of Portugal’s government, the downgrading in sovereign credit rating and that of the Portuguese utility, Energias de Portugal, combined with an EU bailout, have all dampened the outlook. As a result, Portugal has fallen four points. However, it has benefited from the CSP benchmarking.

Brazil has risen four places as it seeks to reduce its reliance on large-scale hydropower and take advantage of strong Atlantic trade winds to develop offshore and build its onshore development pipeline of 5 GW to 2014.

Australia has fallen three points in the aftermath of the Queensland floods. The government has reduced spending on renewables by AU$1.8 billion (US$1.87 billion), including a reduction in the Solar Flagship Program intended to support large-scale solar.

Japan has dropped three places as the short-term focus on natural gas and fuel oil imports to replace lost nuclear power capacity is likely to hamper renewable energy investment. The long-term horizon is less clear, with analysts predicting that the government could favour distributed generation based on renewable technologies.

 

Wind Energy Becomes Spain’s Biggest Energy Source

Spain saw wind turbine become its main source of electricity generation last month, underscoring the country’s progress in becoming one of Europe’s greenest nations.

Power network operator Red Electrica (REE) said Iberian wind farms generated 4,738 GWh of electricity in March to meet 21% of demand, 5% above the year-ago monthly rate, fueled by heavier winds than usual.

 

 

“As parks spun their blades, the country saved €250m by lowering its oil-import bill. It also saved 1.7m tonnes of CO2,” according to Spain’s Wind Industry Association AEE.

Altogether, clean energy met 42.2% of electricity demand though this was down from 48.5 percent against March 2010.

Hydropower accounted for 17.3%, solar energy for 2.6%, nuclear for 19% and coal-powered for 12.9%.

“This historic milestone reached by wind energy shows that this energy source, as well as being indigenous, clean and increasingly competitive, is also capable of supplying power to three million Spanish households,” AEE president Jose Donoso said in a statement.

The production was enough to cover Portugal’s monthly electricity consumption, AEE noted.

Spain is the world’s fourth-largest wind-power market.

 

1000Watt AEOLUS Wind Generator

1000Watt AEOLUS Wind Generator

1000Watt AEOLUS Wind Generator Feature:

1) Blades: carbon fiber,made by mold,weight less than 500G.

2) Aluminium alloy,weight is 18KGS

3) Shakeproof design for main body to ensure performance stabley

4) Clamp-on connection to tower,easy and reliable

5) Three pieces of blades will be installed well by one bolt,easy and convenient

6) Large generating capacity, rotate speed is 600-800RPM

1000Watt AEOLUS  Wind Generator Specification:

 Model  SKYWING-1000
 Max  output ( W )  1000W
 Rated power (DCV)  24/48V
 Rated power ( DCA )  41/20DCA
 Rated power ( m )  1.8m
 Rated power  Corbon fiber
 Yaw direction  Clockwise
 Start-up wind speed ( m/s )  2.5m/s
 Rated wind speed (m/s)  13m/s
 Survival wind speed ( m/s )  45m/s
 Weight�?kgs )  18kgs
 Generator type  Synchronous permanent generator
 Blade No.  3pcs
 Location relative to tower  Upwind

Tags: 1000W Aeolus Wind Turbine, 1000Watt Aeolus Wind generator, 1000Watts Aeolus WindMill, Aeolus Wind generator, Wind Generator

 

600Watt AEOLUS Wind Generator

600Watt AEOLUS Wind Generator

600Watt AEOLUS Wind Generator Feature:

1) Blades: carbon fiber,made by mold,weight less than 500G.

2) Aluminium alloy,weight is 18KGS

3) Shakeproof design for main body to ensure performance stabley

4) Clamp-on connection to tower,easy and reliable

5) Three pieces of blades will be installed well by one bolt,easy and convenient

6) Large generating capacity, rotate speed is 600-800RPM

600Watt AEOLUS  Wind Generator Specification:

 Model  SKYWING-600
 Max  output ( W ) 600W
 Rated power (DCV)  24/48V
 Rated power ( DCA )  25/12.5DCA
 Rated power ( m )  1.6m
 Rated power  Corbon fiber
 Yaw direction  Clockwise
 Start-up wind speed ( m/s )  2.5m/s
 Rated wind speed (m/s)  10.5m/s
 Survival wind speed ( m/s )  45m/s
 Weight�?kgs )  16.5kgs
 Generator type  Synchronous permanent generator
 Blade No.  3pcs
 Location relative to tower  Upwind

Tags: 600W Aeolus Wind Turbine, 600Watt Aeolus Wind generator, 600Watts Aeolus WindMill, Aeolus Wind generator, Wind Generator

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400Watt AEOLUS Wind Generator

400Watt AEOLUS Wind Generator

400Watt AEOLUS Wind Generator Feature:

1) Blades: carbon fiber,made by mold,weight less than 500G.

2) Aluminium alloy,weight is 18KGS

3) Shakeproof design for main body to ensure performance stabley

4) Clamp-on connection to tower,easy and reliable

5) Three pieces of blades will be installed well by one bolt,easy and convenient

6) Large generating capacity, rotate speed is 600-800RPM

400Watt AEOLUS  Wind Generator Specification:

 Model  SKYWING-400
 Max  output ( W )  400W
 Rated power (DCV)  24/48V
 Rated power ( DCA )  16/8DCA
 Rated power ( m )  1.5m
 Rated power  Corbon fiber
 Yaw direction  Clockwise
 Start-up wind speed ( m/s )  2.5m/s
 Rated wind speed (m/s)  9.6m/s
 Survival wind speed ( m/s )  45m/s
 Weight�?kgs )  16kgs
 Generator type  Synchronous permanent generator
 Blade No.  3pcs
 Location relative to tower  Upwind

Tags: 400W Aeolus Wind Turbine, 400Watt Aeolus Wind generator, 400Watts Aeolus

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