Overview
Serra do Barroso III is an operational onshore wind farm in Portugal with a capacity of 22.9 MW, contributing to the country's renewable energy goals.
Serra do Barroso III is an onshore wind farm located in Portugal, with a capacity of 22.9 MW. The facility is operational and plays a role in the country's renewable energy portfolio, which is supported by national targets and EU directives. The wind farm utilizes wind turbines to generate electricity, a common technology in Portugal's renewable energy sector. Portugal has a strong regulatory framework under the EU Renewable Energy Directive III, aiming for 42.5% renewable energy by 2030, and national feed-in tariffs have historically supported wind energy development. The facility contributes to grid integration and helps reduce carbon emissions. Its location in a region with favorable wind conditions supports consistent energy generation, aligning with Portugal's transition to a low-carbon economy.
Environmental context
Onshore wind farms like Serra do Barroso III can have visual impacts on the landscape and may affect local bird and bat populations. However, Portugal's regulatory framework requires environmental impact assessments to mitigate these effects. The facility's capacity of 22.9 MW is considered small to medium scale, reducing potential land-use conflicts.
Frequently asked questions
Serra do Barroso III is an onshore wind farm located in Portugal, with coordinates approximately 41.68° N, -7.85° E.
The facility has a capacity of 22.9 megawatts (MW), making it a small to medium-scale wind farm.
Yes, the wind farm is currently operational and contributing to Portugal's renewable energy supply.
Portugal follows the EU Renewable Energy Directive III, which sets a target of 42.5% renewable energy by 2030. National feed-in tariffs and grid connection policies have historically supported wind farm development.
Onshore wind farms can impact landscapes and wildlife, particularly birds and bats. Environmental impact assessments are required to mitigate these effects, and facilities are often sited in areas with good wind resources to maximize efficiency.