Germany

Ammerfeld wind turbine — 2,000 MW Wind

Wind Renewable Verified

Ammerfeld wind turbine is a 2,000 MW wind power station located in Germany, commissioned in 2000. It is one of the facilities tracked in the World Power Plants database.

Capacity
2,000 MW

Installed

Commissioned
2000

Year online

Owner
E.ON Climate & Renewables

Operator

Location
48.79, 10.98

Coordinates

Technical Details

Fuel Type
Wind
Capacity
2,000 MW
Commissioned
2000
Status
Operational
Owner
E.ON Climate & Renewables
Country
Germany
Coordinates
48.791, 10.984

About this plant

The Ammerfeld wind turbine, located in Germany, represents a significant advancement in the country’s pursuit of renewable energy sources. With an impressive capacity of 2000 megawatts (MW), it stands as one of the largest wind power facilities in the nation and plays a crucial role in Germany’s energy sector. This facility is a testament to the country’s commitment to transitioning away from fossil fuels and towards sustainable energy production, contributing to its ambitious climate targets and energy independence goals.

Wind power, the fuel type utilized by the Ammerfeld wind turbine, is a clean and renewable energy source harnessed from the kinetic energy generated by wind. The technical implementation of wind energy involves the use of large turbines equipped with blades that rotate when wind flows over them. This mechanical movement drives a generator that converts the kinetic energy into electricity. The capacity of 2000 MW indicates that the Ammerfeld facility can produce enough energy to power millions of homes, significantly reducing reliance on traditional energy sources such as coal and natural gas.

The environmental impact of the Ammerfeld wind turbine is predominantly positive. Wind energy production emits no greenhouse gases during operation, making it one of the cleanest forms of electricity generation available. This aligns with Germany’s efforts to reduce carbon emissions and combat climate change. Additionally, wind farms like Ammerfeld help to minimize air pollution and conserve water, as they do not require water for cooling processes like many fossil fuel plants do. However, it is important to acknowledge some ecological considerations, such as the impact on local wildlife, particularly birds and bats, which can be affected by turbine operations. Measures are often taken to mitigate these impacts, including careful site selection and technological innovations designed to minimize harm.

Regionally, the Ammerfeld wind turbine is significant not only for its energy output but also for its role in promoting economic growth and job creation in the area. Wind farms contribute to local economies through job opportunities in construction, maintenance, and operation. Furthermore, the presence of such a large-scale renewable energy project can attract investment and foster technological innovation in the region, positioning it as a hub for energy transition initiatives.

In summary, the Ammerfeld wind turbine is a critical asset in Germany’s energy landscape, exemplifying the country’s dedication to renewable energy and sustainability. With its substantial capacity, it contributes to the reduction of carbon emissions, supports local economies, and underscores the potential of wind power as a viable alternative to fossil fuels. As Germany continues to navigate the complexities of energy transition, facilities like Ammerfeld will play a pivotal role in shaping a cleaner, more sustainable future.

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