Overview
P. E. La Serreta (Unificado con Ampliacion) is an operational onshore wind farm in Spain with a capacity of 49.5 MW, owned by Molinos del Ebro S.A.
P. E. La Serreta (Unificado con Ampliacion) is an onshore wind farm located in Spain, owned and operated by Molinos del Ebro S.A. The facility has an installed capacity of 49.5 MW, placing it in the medium-scale range for wind farms in the country. The wind farm operates under Spain's renewable energy regulatory framework, which aligns with the European Union's Renewable Energy Directive III, targeting 42.5% renewable energy by 2030. Spain has implemented national feed-in tariffs and grid connection regimes to support wind energy development, contributing to its position as a leading wind energy producer in Europe. The facility contributes to Spain's renewable energy goals by generating clean electricity, reducing reliance on fossil fuels, and supporting grid stability. Its location in the Ebro Valley benefits from consistent wind patterns, typical for onshore wind farms in the region, and helps meet local and national renewable energy targets.
Environmental context
The wind farm is situated in the Ebro Valley, an area with favorable wind resources for energy generation. Onshore wind farms like this one can have visual impacts on the landscape and potential effects on local bird and bat populations. However, proper siting and mitigation measures help minimize these impacts. The facility supports Spain's transition to renewable energy, reducing greenhouse gas emissions and air pollution.
Frequently asked questions
P. E. La Serreta is an onshore wind farm located in Spain, in the Ebro Valley region.
The wind farm has an installed capacity of 49.5 MW, making it a medium-scale facility.
The facility is owned by Molinos del Ebro S.A.
Spain operates under the EU Renewable Energy Directive III, targeting 42.5% renewable energy by 2030, with national feed-in tariffs and grid connection support.
Onshore wind farms can have visual impacts and affect bird and bat populations, but proper siting and mitigation reduce these effects.