Shin-Takasegawa Pumped Storage Station — 1,280 MW Hydroelectric
Shin-Takasegawa Pumped Storage Station is a 1,280 MW hydro power plant located in Japan. View location, capacity, and technical details.
Installed
Year online
Operator
Coordinates
Insights
Location
Technical Details
- Fuel Type
- Hydroelectric
- Capacity
- 1,280 MW
- Commissioned
- 1971
- Status
- Operational
- Owner
- TEPCO Renewable Power
- Country
- Japan
- Coordinates
- 36.474, 137.690
- Wikipedia
- Link
Estimated Carbon Footprint
tonnes / year
over ~80 yrs
gCO₂ per kWh
Annual emissions equal to
Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator
Nearby Stations
About this plant
The Shin-Takasegawa Pumped Storage Station, with a capacity of 1280 megawatts (MW), is a significant hydroelectric power facility located in Japan, operated by TEPCO Renewable Power. Commissioned in 1971, this power plant plays a crucial role in the country’s energy sector by providing a reliable source of renewable energy and contributing to grid stability, particularly during peak demand periods. As a pumped storage facility, it utilizes the principles of hydropower to store energy and manage electricity flow effectively.
The operational mechanism of the Shin-Takasegawa Pumped Storage Station involves two water reservoirs situated at different elevations. During periods of low electricity demand, excess power generated from renewable sources, such as wind and solar, is used to pump water from the lower reservoir to the upper reservoir. This process effectively stores energy in the form of gravitational potential energy. When energy demand increases, the stored water is released back to the lower reservoir through turbines, generating electricity. This ability to quickly ramp up power generation makes the facility an essential component of Japan’s energy infrastructure, especially as the country seeks to enhance its renewable energy portfolio.
As a hydroelectric power plant, Shin-Takasegawa has a relatively low environmental impact compared to fossil fuel-based power generation. Hydropower is considered a clean energy source, as it does not produce greenhouse gas emissions during operation. However, the construction and operation of reservoirs can have ecological consequences, such as habitat alteration and impacts on local wildlife. In the case of Shin-Takasegawa, environmental assessments have been conducted to mitigate adverse effects, and ongoing monitoring efforts are in place to ensure that the plant operates sustainably.
Regionally, the Shin-Takasegawa Pumped Storage Station serves not only as a critical energy source but also as a stabilizing force for the electrical grid in Japan. The ability to store and dispatch electricity on demand helps to balance supply and demand, especially in a country that experiences significant fluctuations in energy needs. Furthermore, as Japan continues to transition towards a more sustainable energy future following the Fukushima nuclear disaster, facilities like Shin-Takasegawa are increasingly vital in supporting the integration of intermittent renewable energy sources into the grid.
In conclusion, the Shin-Takasegawa Pumped Storage Station represents a pivotal advancement in Japan’s energy landscape. Its role in harnessing hydroelectric power, coupled with its capacity to provide grid stability and support renewable energy integration, underscores its importance in both regional and national contexts. As Japan strives to meet its energy goals while minimizing environmental impacts, the Shin-Takasegawa facility exemplifies the potential of pumped storage hydroelectricity in achieving a cleaner and more resilient energy future.
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