Overview
Marvila is a 12 MW onshore wind farm in Portugal, operational and contributing to the country's renewable energy capacity. It generates clean electricity from wind power.
Marvila is an operational onshore wind farm located in Portugal, with a capacity of 12 megawatts. As a wind energy facility, it plays a role in Portugal's transition to renewable energy sources, supporting the country's goals under the EU Renewable Energy Directive. The facility operates under Portugal's national renewable energy framework, which aligns with the EU Renewable Energy Directive III (2023/2413) targeting 42.5% renewable energy by 2030. The 12 MW capacity places it as a small-to-medium scale wind farm, typical for onshore wind projects in the region. Wind farms like Marvila contribute to grid stability and reduce reliance on fossil fuels. The facility's operation supports local energy needs and helps Portugal meet its climate commitments, while also presenting typical considerations such as visual impact and integration into the grid.
Environmental context
Onshore wind farms in Portugal are often situated in areas with consistent wind resources, which can include agricultural or rural landscapes. The environmental context involves managing visual impacts on the landscape and potential effects on local bird and bat populations. Grid integration is a key consideration to ensure stable power supply from variable wind generation.
Frequently asked questions
Marvila is an onshore wind farm located in Portugal, with coordinates approximately 39.57° N, -8.69° E.
The Marvila wind farm has a capacity of 12 megawatts (MW), making it a small-to-medium scale wind energy facility.
It is operational and contributes to Portugal's renewable energy grid.
Portugal's renewable energy sector operates under the EU Renewable Energy Directive III (2023/2413), which sets a target of 42.5% renewable energy by 2030. National feed-in tariffs and grid connection regimes support wind farm development.
Onshore wind farms like Marvila typically address visual impact on landscapes, potential effects on bird and bat populations, and grid integration challenges due to variable wind generation.