Overview
Vaugris is a 72 MW hydroelectric power plant in France, operated by GDF-SUEZ. It contributes to the country's renewable energy capacity.
Vaugris is a hydroelectric power plant located in France, with a capacity of 72 megawatts. The facility is owned and operated by GDF-SUEZ, a major energy company. As a hydroelectric plant, it harnesses the energy of flowing water to generate electricity, contributing to France's diverse energy mix. The plant operates under the regulatory framework of the European Union, including the Industrial Emissions Directive and relevant national regulations. Hydroelectric power is a mature technology in France, with many plants built in the 20th century. Vaugris's capacity places it in the small-to-medium scale for hydroelectric facilities in the country. Environmentally, hydroelectric power offers low carbon emissions compared to fossil fuel plants. However, it can impact local aquatic ecosystems and water flow. Vaugris plays a role in France's renewable energy goals and provides grid stability through its dispatchable power generation.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect river ecosystems and water management. The Vaugris plant's location on a river may influence local hydrology and aquatic habitats. Its operation aligns with France's commitment to renewable energy and reducing greenhouse gas emissions.
Frequently asked questions
The Vaugris hydroelectric power plant is located in France, with coordinates approximately 45.495° N, 4.826° E.
The Vaugris hydroelectric power plant has a capacity of 72 megawatts.
The Vaugris hydroelectric plant is owned and operated by GDF-SUEZ, a major French energy company.
Hydroelectric power plants in France must comply with EU directives such as the Industrial Emissions Directive and national water management laws, including environmental impact assessments and water usage permits.
Hydroelectric power generation produces low carbon emissions but can alter river ecosystems, affect fish migration, and change water flow patterns. Proper management and mitigation measures are required to minimize ecological impacts.