Overview
FW Radziejów is a 42 MW onshore wind farm in Poland, operated by Vortex Energy. It contributes to Poland's renewable energy capacity under the EU Renewable Energy Directive.
FW Radziejów is an operational onshore wind farm located in Poland, developed and owned by Vortex Energy. With a capacity of 42 megawatts, it represents a medium-scale wind energy facility within the Polish renewable energy landscape. The facility operates under Poland's regulatory framework aligned with the EU Renewable Energy Directive III (2023/2413), which sets a 42.5% renewable energy target by 2030. Poland has been expanding its wind energy capacity through support schemes and grid connection policies, making projects like FW Radziejów integral to the national energy transition. Environmentally, the wind farm contributes to reducing greenhouse gas emissions and diversifying Poland's energy mix away from coal. Its operation supports local grid stability and provides clean electricity to the region, aligning with broader European climate goals.
Environmental context
The wind farm is situated in a region with moderate wind resources typical for central Poland. Onshore wind farms like FW Radziejów can have visual impacts on the landscape and require careful siting to minimize effects on local bird and bat populations. Grid integration is a key consideration, as wind power variability necessitates balancing measures.
Frequently asked questions
FW Radziejów is an onshore wind farm located in Poland, with coordinates approximately 52.6349 N, 18.4769 E.
FW Radziejów has a capacity of 42 megawatts, making it a medium-scale wind farm in Poland.
FW Radziejów is owned and operated by Vortex Energy, a renewable energy company active in Poland.
Wind farms in Poland operate under the EU Renewable Energy Directive III, which mandates a 42.5% renewable energy share by 2030, and national support schemes for renewable energy.
Onshore wind farms can impact landscapes and wildlife, particularly birds and bats. Proper siting and mitigation measures are required to minimize these effects.