Lac-Alfred is a pivotal wind power generation facility located in Canada, contributing significantly to the country's renewable energy landscape. With a capacity of 300 MW, this power plant plays a crucial role in supporting Canada's commitment to sustainable energy solutions and reducing greenhouse gas emissions. The facility harnesses wind energy through advanced turbine technology, which allows for efficient energy generation while minimizing environmental impact. Located at coordinates 48.4194, -67.7137, Lac-Alfred is strategically positioned in the province of Quebec, an area known for its favorable wind conditions, making it an ideal site for wind energy projects. The ownership structure of Lac-Alfred is diversified, with Enbridge holding a 67.5% stake, EDF Energies Nouvelles at 20%, and the MRC of La Mitis & Matapedia contributing 12.5%. This collaboration reflects a blend of private and public interests aimed at promoting clean energy. In the context of Quebec's energy policy, the Lac-Alfred power plant aligns with the province's goal to increase the share of renewable energy in its electricity mix, thereby enhancing energy security and sustainability. As part of the broader Canadian energy grid, Lac-Alfred not only provides clean energy to local communities but also supports the national objective of transitioning to a low-carbon economy. The wind technology utilized at Lac-Alfred includes modern turbines that convert wind kinetic energy into electrical power efficiently. With its substantial capacity, the facility contributes to the stability and reliability of the electrical grid in the region, ensuring that energy demands are met sustainably. Overall, Lac-Alfred exemplifies how wind energy can play a significant role in shaping the future of energy generation in Canada.
11 years old
Canada, North America
- Primary Fuel Type
- Wind
- Energy Source
- Renewable
- Country
Canada- Continent
- North America
- Data Source
- Global Power Plant Database
Wind power generation harnesses the kinetic energy of wind to produce electricity, making it one of the fastest-growing renewable energy sources globally. This process begins with wind turbines, which consist of large blades mounted on a tower. As the wind blows, it causes the blades to rotate, transforming the wind's kinetic energy into mechanical energy. This mechanical energy is then converted into electrical energy through a generator connected to the turbine. The efficiency of wind turbines has significantly improved over the past decades, with modern designs capable of generating power even at low wind speeds.
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