Overview
SERRA DE VILOBI is an operational onshore wind farm in Catalonia, Spain, with a capacity of 40.5 MW. It is owned by ENERGIAS EOLICAS DE CATALUNYA SA and contributes to Spain's renewable energy targets.
SERRA DE VILOBI is an onshore wind farm located in Catalonia, Spain, with an installed capacity of 40.5 MW. The facility is owned by ENERGIAS EOLICAS DE CATALUNYA SA and is currently operational, contributing to the region's renewable energy generation. The wind farm operates under Spain's regulatory framework, which aligns with the EU Renewable Energy Directive III, targeting 42.5% renewable energy by 2030. Spain's national energy and climate plan supports wind energy through feed-in tariffs and grid connection incentives, making onshore wind a key technology for decarbonization. As a medium-scale wind farm, SERRA DE VILOBI helps reduce carbon emissions and supports local energy independence. Its location in Catalonia benefits from favorable wind conditions, and the facility plays a role in the regional grid, supplying clean electricity to the surrounding area.
Environmental context
Onshore wind farms like SERRA DE VILOBI can have visual impacts on the landscape and may affect local bird and bat populations. However, proper siting and mitigation measures help minimize these effects. The facility's operation supports Spain's transition to renewable energy, reducing reliance on fossil fuels and lowering greenhouse gas emissions.
Frequently asked questions
SERRA DE VILOBI is an onshore wind farm located in Catalonia, Spain, at coordinates 42.1555 N, 2.2828 E.
SERRA DE VILOBI has an installed capacity of 40.5 MW, making it a medium-scale wind farm.
SERRA DE VILOBI is owned by ENERGIAS EOLICAS DE CATALUNYA SA.
Spain's renewable energy policy is aligned with the EU Renewable Energy Directive III, which sets a 42.5% renewable energy target by 2030. The country also implements feed-in tariffs and grid connection incentives for wind power.
Onshore wind farms can have visual impacts on landscapes and may affect bird and bat populations. However, proper siting and mitigation measures are used to minimize these effects, and the overall benefit of clean energy generation is significant.