China

Tai’an Hydro Power Station — 1,000 MW Hydroelectric

Hydroelectric Renewable Verified

Tai’an Hydro Power Station is a 1,000 MW hydro power plant located in China. View location, capacity, and technical details.

Capacity
1,000 MW

Installed

Commissioned
2015

Year online

Owner
China Three Gorges Corporation

Operator

Location
36.22, 117.04

Coordinates

Insights

#541
largest in China
#355
largest Hydroelectric worldwide
#2,414
largest worldwide
2015
31 yrs newer than avg
508
operated by China Three Gorges…
39
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
1,000 MW
Commissioned
2015
Status
Operational
Owner
China Three Gorges Corporation
Country
China
Coordinates
36.225, 117.042

Carbon Footprint

Annual CO₂
84,096 t

tonnes / year

Lifetime CO₂
6,727,680 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

18,282
cars per year
11,213
homes per year
3,822,545
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Plants

About this plant

泰安水电站, or Tai’an Hydropower Station, is a significant hydroelectric power facility located in China, with a total installed capacity of 1000 megawatts (MW). This power plant plays a crucial role in the country’s energy sector, primarily contributing to the renewable energy landscape as China strives to reduce its reliance on fossil fuels and meet growing energy demands sustainably. The facility harnesses the kinetic energy of flowing water to generate electricity, utilizing the principles of hydrodynamics and turbine technology. In doing so, it exemplifies the efficient use of renewable resources, aligning with China’s strategic objectives to increase the share of clean energy in its overall energy mix.

The Tai’an Hydropower Station is designed to utilize hydroelectric energy, which is generated by the gravitational force of falling or flowing water. The process involves diverting river water through turbines, which then convert the hydraulic energy into mechanical energy, and subsequently into electrical energy. This method of power generation is characterized by its low operational costs and minimal fuel expenses, as water is a renewable resource. The technology employed at the station involves advanced turbine designs and high-efficiency generators, which optimize energy conversion and minimize waste. The power plant’s capacity allows it to provide a substantial amount of electricity to the regional grid, ensuring stability and reliability in power supply.

From an environmental perspective, hydroelectric power plants like Tai’an present several benefits, such as low greenhouse gas emissions compared to traditional fossil fuel-based power generation. However, they also pose challenges, including potential ecological disruptions to aquatic ecosystems and the displacement of communities due to reservoir creation. The Tai’an Hydropower Station has likely undertaken various measures to mitigate these impacts, including fish passage systems and environmental assessments to balance energy production with ecological preservation. By effectively managing these challenges, the facility aims to contribute positively to both energy generation and environmental stewardship.

Regionally, the Tai’an Hydropower Station holds significant importance. It not only provides electricity to local communities but also supports industrial activities and economic development in the surrounding areas. The reliable power supply aids in attracting investments and fostering growth in various sectors, including manufacturing and services. As China continues to prioritize renewable energy sources, facilities like the Tai’an Hydropower Station are integral to achieving energy security and sustainability goals. The plant’s operation not only enhances the energy infrastructure of the region but also aligns with national commitments to reduce carbon emissions and promote green energy initiatives. Overall, the Tai’an Hydropower Station stands as a vital asset in China’s ongoing transition towards a more sustainable and diversified energy landscape.

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