Overview
Horrmundsvalla is a 6.5 MW hydroelectric power plant in Sweden, operated by Fortum. It contributes to Sweden's renewable energy grid with low-emission hydropower.
Horrmundsvalla is a hydroelectric power plant located in Sweden, with coordinates 61.2833° N, 13.1500° E. It has an installed capacity of 6.5 MW and is owned by Fortum, a major Nordic energy company. The plant is operational and plays a role in Sweden's renewable energy portfolio. Hydroelectric power plants like Horrmundsvalla convert the energy of flowing water into electricity. Sweden has a long history of hydropower development, and the sector is well-regulated under national environmental laws and EU directives. The plant's relatively small capacity suggests it may be a run-of-river facility, which typically has lower environmental impact than large storage dams. As a renewable energy source, Horrmundsvalla contributes to Sweden's goal of a fossil-free electricity system. Its operation supports local grid stability and provides clean energy to the surrounding region. The plant's age and specific technology are not detailed, but its small scale and hydro type indicate a low environmental footprint.
Environmental context
Hydropower plants like Horrmundsvalla have a low carbon footprint but can affect local aquatic ecosystems. The plant's small capacity suggests minimal alteration to river flow, reducing potential impacts on fish migration and sediment transport. Sweden's strict environmental regulations ensure that hydropower operations balance energy production with ecological preservation.
Frequently asked questions
Horrmundsvalla is located in Sweden at coordinates 61.2833° N, 13.1500° E.
Horrmundsvalla has an installed capacity of 6.5 megawatts (MW).
Horrmundsvalla is owned by Fortum, a leading energy company in the Nordic region.
Horrmundsvalla is a hydroelectric power plant, which generates electricity from flowing water.
Hydroelectric plants in Sweden operate under national environmental laws and the EU Water Framework Directive, which aim to balance energy production with water resource protection.