Published on: May 29, 2025 / update from: May 29, 2025 - Author: Konrad Wolfenstein
Solarpark deerode supplies 9,000 households in Göttingen, is 40 soccer fields, which corresponds to about 28 hectares - creative image: Xpert.digital
Lower Saxony | Göttingen's energy transition: Solar Park deerode supplies 9,000 households
Innovation for the region: Solar Park deerode in detail
The new Solar Park Deiderode near Göttingen marks a significant progress in the regional energy transition and demonstrates the commitment of Stadtwerke Göttingen for sustainable power supply. With an area of 28 hectares, which corresponds to around 40 football fields, the system represents one of the largest photovoltaic open-air facilities in the region and can supply around 9,000 households with renewable electricity annually. The project agreed economic efficiency with ecological goals and shows innovative approaches for sustainable land use through the integration of grazing and nature conservation.
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Technical specifications and performance data
The Solar Park deiderode represents the latest photovoltaic technology in a large area. The system comprises a total of 46,000 Trina Solar solar modules, which were installed on an area of 28 hectares. With a total output of 31.56 megawatts, the park produces more than 31.5 million kilowatt hours of clean solar power every year. This corresponds to a specific annual profit of around 1,020 kilowatt hours per kilowatt of installed performance, which is a very good value for German standards.
The technical implementation was carried out by Dr. Metje Green Energy Projects as a general contractor and EPC service provider. The produced solar energy is fed into the network of Stadtwerke Göttingen. The system uses upset modules with a passage height of about one meter, which enables optimized precipitation seepage and at the same time creates space for biological diversity.
Economic dimensions and investment volume
The project represents a significant investment in the regional energy infrastructure. Stadtwerke Göttingen invested a total of 16.5 million euros in the facility and realized the entire construction project independently. Project development extended over a period of 3.5 years, which illustrates the complexity of such major projects and the lengthy approval processes.
The solar park was not only developed as an independent project, but also as part of strategic partnerships. An important Power Purchase Agreement (PPA) was completed with MainCubes, which provides for the delivery of 34 megawatt solar power over a term of ten years. These long -term contracts create planning security for both sides and support the continuous expansion of renewable energies in the region.
Ecological effects and environmental benefits
The Solar Park deiderode makes a substantial contribution to climate protection and reducing greenhouse gas emissions. Compared to conventional electricity, the new system saves about 12,000 tons of CO₂ annually. This emission savings corresponds to the CO₂ footprint of several thousand inhabitants and significantly contributes to the region's climate protection destinations.
A special feature of the project is the innovative connection of energy generation and sustainable land use. The upset modules were designed with a passage height of about one meter, which enables continued agricultural use as a sheep pasture. This double use, known as Agri-Photovoltaic, ensures that the solar park is not only useful for energy generation, but also continues to offer a habitat for plants and animals. Rainfall can seep away as before, and biodiversity is maintained by the possibility of grazing.
Regional integration and location factors
The solar park is strategically conveniently near deiderode on areas that belong to the municipalities of Rosdorf and Friedland in the district of Göttingen. The choice of location shows the successful inter -municipal cooperation in the implementation of projects for renewable energies. Friedland's mayor Andreas Friedrichs (SPD) confirmed that the solar park in the community is well received, although energy projects were never uncritical.
The project fits into an existing infrastructure for renewable energies in the region. As early as 2023, a smaller 267 kwp photovoltaic system was installed on the nearby landfill dowry, which shows that the location is well suited for solar energy projects. In addition, there is a solar park in the region section 4 with an output of 5.00 MW, which documents the gradual development of the area into a center for solar energy.
Strategic importance for the regional energy transition
The Solar Park Deiderode is an essential component in the strategic expansion program of Stadtwerke Göttingen for renewable energies and contributes to the achievement of the 2030 Göttingen Klimplan. The project is in the context of a more comprehensive regional energy transition initiative, which was institutionalized in 2024 by the establishment of the Energygion Göttingen GmbH.
The Göttingen Energy region, a cooperation between the district of Göttingen, City of Göttingen, EAM Natur Energie GmbH and the Stadtwerke Göttingen, aims to shape the regional energy supply itself and to coordinate the development of projects into renewable energies. This inter -municipal cooperation creates synergy effects and makes it possible to keep added value from renewable energies in the region.
Meaning for the energy supply of the region
With an annual production of 31.5 million kilowatt hours, the solar park can supply around 9,000 three-person households with renewable electricity. This corresponds to about 20 percent of customers who supply the Göttingen municipal utility company, gas, water and district heating. The system thus represents a significant contribution to the local power supply and reduces the dependence on external energy sources.
The project illustrates the enormous potential of solar energy in the Göttingen region. According to the master plan 100% climate protection Göttingen, around 80 percent of the renewable energy potential in Göttingen are eliminated on solar energy. The Solar Park deerode shows how this potential can be opened up by large open space systems and forms a model for further projects in the region.
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Promotion and support of solar energy
The success of the dine fashion solar park is also in the context of municipal support measures for renewable energies. The city of Göttingen has been supporting the climate -friendly renovation of buildings and the installation of solar systems on the Göttingen Climate Mund Göttingen. Although the solar support module for private systems has been reduced due to improved market conditions since January 2025, continuous funding shows the long -term commitment to the energy transition.
Future prospects and sustainability
The Solar Park deerode marks an important milestone, but not the end point of regional efforts for renewable energies. The system demonstrates how large photovoltaic projects can be successfully implemented without completely displacing agricultural use. The concept of Agri-Photovoltaic, which is used in the solar park, could serve as a model for further projects in the region.
The long -term effects of the project go beyond direct energy generation. The solar park contributes to strengthening the regional economy, creates jobs and positions the Göttingen region as a pioneer in the implementation of the energy transition. The combination of ecological benefits, economic efficiency and social acceptance makes the project a successful example of sustainable energy infrastructure.
Solar Park deerode: Innovation for the energy transition
The Solar Park deiderode represents significant progress in the regional energy transition and shows how large photovoltaic projects can be successfully implemented through strategic planning and innovative approaches. With its capacity of 31.56 megawatts and the annual production of 31.5 million kilowatt hours, he makes a substantial contribution to the sustainable energy supply in the region. The integration of nature conservation and agriculture through the concept of the up -to -be modules shows that energy transition and ecological responsibility can go hand in hand. The project is an important component for achieving the region's climate goals and serves as a model for further initiatives in the field of renewable energies.
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