Overview
Willem Anna Polder is a 9 MW onshore wind farm in the Netherlands, operational and contributing to the country's renewable energy capacity.
Willem Anna Polder is an onshore wind farm located in the Netherlands, with a capacity of 9 megawatts. The facility is operational and plays a role in the Dutch renewable energy landscape, which is characterized by ambitious targets for wind energy deployment. The Netherlands has a strong regulatory framework supporting renewable energy, including the EU Renewable Energy Directive III (2023/2413) with a 42.5% renewable target by 2030, and national feed-in tariffs and grid-connection regimes. Onshore wind farms like Willem Anna Polder benefit from these policies, which aim to increase the share of wind energy in the national grid. The environmental context of this facility involves typical considerations for onshore wind farms, such as visual impact on the landscape and potential effects on local bird and bat populations. The Netherlands has guidelines to mitigate these impacts, ensuring that wind energy development proceeds with environmental stewardship.
Environmental context
The Willem Anna Polder wind farm operates in a region where onshore wind energy is a key component of the Netherlands' renewable energy strategy. Environmental considerations include visual impact on the polder landscape and potential interactions with local bird and bat species. The Dutch regulatory framework requires environmental assessments and mitigation measures to address these factors.
Frequently asked questions
Willem Anna Polder is an onshore wind farm located in the Netherlands, with coordinates approximately 51.6392 N, 4.1292 E.
Willem Anna Polder has a capacity of 9 megawatts, making it a small-scale onshore wind farm.
Willem Anna Polder produces wind energy, using wind turbines to convert wind power into electricity.
The Netherlands follows the EU Renewable Energy Directive III, targeting 42.5% renewable energy by 2030, and has national feed-in tariffs and grid-connection regimes to support wind energy.
Common environmental considerations include visual impact on the landscape, noise, and potential effects on bird and bat populations, which are addressed through environmental assessments and mitigation measures.