Jilebulake is a 160 MW hydro power plant located in China. View location, capacity, and technical details.
Installed
Year online
Operator
Coordinates
Insights
Location
Technical Details
- Fuel Type
- Hydroelectric
- Capacity
- 160 MW
- Commissioned
- 2013
- Status
- Operational
- Owner
- China Three Gorges Corporation
- Country
- China
- Coordinates
- 48.260, 86.399
Estimated Carbon Footprint
tonnes / year
over ~%d 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
Jilebulake, with its 160 MW capacity, ranks as the 1313th largest power generation facility in China and stands as the 258th largest hydro facility among the nation’s 1000 hydro plants. Commissioned in 2013, this hydroelectric power station is part of a vast energy network comprising 4430 plants that together generate a staggering 1,603,494 MW of electricity, predominantly from coal. Located in a region that is not densely populated with other power facilities, Jilebulake benefits from proximity to a few key plants including Nierji, which has a 250 MW hydro capacity, and two wind power plants, each producing 49 MW. This combination of renewable sources highlights the increasing diversification of energy generation methods in this area. Jilebulake’s output, while modest in comparison to the larger plants, represents a critical element in the local energy mix and assists in balancing the grid in a region that is gradually shifting towards more sustainable energy sources. With the national energy profile dominated by coal, Jilebulake’s contribution is essential in promoting renewable energy growth and reducing overall carbon emissions. As the global focus on sustainability intensifies, facilities like Jilebulake are poised to play a significant role in shaping China’s energy future. The plant’s operation is indicative of China’s commitment to expanding its renewable energy capabilities and ensuring a transition from fossil fuels to greener alternatives, fostering both environmental and economic benefits in the long run.
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