France

REVIN — 808 MW Hydroelectric

Hydroelectric Renewable Verified

REVIN is a 808 MW hydro power plant located in France. View location, capacity, and technical details.

Capacity
808 MW

Installed

Commissioned
2000

Year online

Owner
EDF

Operator

Location
49.91, 4.63

Coordinates

Insights

#52
largest in France
#466
largest Hydroelectric worldwide
#2,983
largest worldwide
2000
16 yrs newer than avg
188
operated by EDF
53
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
808 MW
Commissioned
2000
Status
Operational
Owner
EDF
Country
France
Coordinates
49.906, 4.625

Carbon Footprint

Annual CO₂
67,950 t

tonnes / year

Lifetime CO₂
5,435,965 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

14,772
cars per year
9,060
homes per year
3,088,617
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Plants

About this plant

The Revin Hydroelectric Power Plant, located in the Ardennes region of France, boasts a substantial capacity of 808 megawatts (MW). As a significant component of France’s energy sector, this facility plays a vital role in the country’s commitment to renewable energy sources and sustainable development. Hydropower, the fuel type utilized by the Revin plant, is derived from the kinetic energy of flowing water, making it a clean and renewable energy source. The technology employed in hydroelectric plants generally involves the construction of dams that create reservoirs, allowing for the controlled release of water to drive turbines and generate electricity. This process is highly efficient, with modern hydroelectric plants achieving reservoir efficiencies of approximately 90 percent or greater.

The Revin plant is strategically important not only for its energy output but also for its contribution to France’s overall energy mix. France is known for its low-carbon electricity generation, primarily due to its significant reliance on nuclear power. However, the increasing emphasis on diversifying energy sources has led to a greater focus on renewables like hydropower. The Revin facility is instrumental in providing a stable and reliable source of electricity, especially during peak demand periods, thereby supporting the grid’s stability and reducing reliance on fossil fuels.

In terms of environmental impact, hydroelectric energy generation presents both advantages and challenges. One of the primary benefits of hydropower is its ability to produce electricity without direct greenhouse gas emissions, which is crucial in the fight against climate change. The Revin plant contributes to reducing carbon emissions while providing a renewable source of energy. However, the construction and operation of hydroelectric facilities can have ecological impacts, such as alterations to local ecosystems, fish populations, and water quality. The Revin power plant, like many in the hydropower sector, must adhere to regulatory measures designed to minimize these impacts, including fish passage solutions and habitat restoration initiatives.

Regionally, the Revin power plant serves as a significant economic driver for the local community. It provides employment opportunities and supports local businesses while also contributing to the region’s infrastructure development. The presence of a large hydroelectric facility can also enhance local tourism, as many visitors are drawn to the scenic landscapes and recreational opportunities near rivers and lakes. Furthermore, as France continues to pursue its energy transition goals, the Revin plant exemplifies the potential for harnessing local resources to achieve sustainable energy independence.

In summary, the Revin Hydroelectric Power Plant stands as a pillar of France’s renewable energy strategy, showcasing the benefits and complexities of hydropower generation. By contributing to the country’s energy security, supporting local economies, and promoting environmental sustainability, the Revin facility underscores the importance of renewable energy in addressing contemporary energy challenges.

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