China

Gezhouba — 3,190 MW Hydroelectric

Hydroelectric Renewable Verified

Gezhouba is a 3,190 MW hydro power plant located in China. View location, capacity, and technical details.

Capacity
3,190 MW

Installed

Commissioned
1986

Year online

Owner
China Yangtze Power Co., Ltd.

Operator

Location
30.74, 111.27

Coordinates

Insights

#71
largest in China
#49
largest Hydroelectric worldwide
#303
largest worldwide
1986
2 yrs newer than avg
23
operated by China Yangtze Power…
13
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
3,190 MW
Commissioned
1986
Status
Operational
Owner
China Yangtze Power Co., Ltd.
Country
China
Coordinates
30.740, 111.270

Carbon Footprint

Annual CO₂
268,266 t

tonnes / year

Lifetime CO₂
21,461,299 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

58,319
cars per year
35,769
homes per year
12,193,920
trees to offset

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

Nearby Plants

About this plant

The Gezhouba Hydropower Plant, located on the Yangtze River in Hubei Province, China, has a significant role in the country’s energy sector. Commissioned in 1986, this facility boasts an impressive capacity of 3,190 megawatts (MW), making it one of the largest hydroelectric plants in China. The development of Gezhouba marked a pivotal moment in China’s investment in renewable energy sources, particularly hydropower, which continues to be a cornerstone of the nation’s energy strategy. As a hydroelectric power plant, Gezhouba utilizes the potential energy of flowing water to generate electricity. Water from the Yangtze River is diverted to drive turbines, converting kinetic energy into electrical energy. This process is not only efficient but also sustainable, as it harnesses a renewable resource that is abundant in China, particularly along major river systems. The use of hydroelectric power is vital for reducing reliance on fossil fuels, thus contributing to the nation’s efforts to combat climate change and reduce greenhouse gas emissions.

The environmental impact of the Gezhouba Hydropower Plant is multifaceted. On one hand, it provides a clean source of energy, significantly reducing carbon emissions compared to coal-fired power plants. On the other hand, like many large hydropower projects, Gezhouba has faced criticism regarding its ecological footprint. The construction of the plant altered local ecosystems and disrupted fish migration patterns in the Yangtze River. Efforts have been made to mitigate these impacts, including the implementation of fish ladders and other conservation measures. Overall, the benefits of renewable energy generation at Gezhouba contribute positively to the environment, although it is essential to balance these benefits with ecological considerations.

Regionally, the Gezhouba plant plays a crucial role in supporting the energy demands of central and eastern China. It is a vital component of the national grid, helping to stabilize electricity supply across a wide area. The plant not only serves local communities but also supports industrial growth and development in nearby provinces. As China continues to urbanize and industrialize, the demand for reliable and clean energy sources increases, positioning Gezhouba as an essential player in meeting these needs. Furthermore, the plant has catalyzed regional economic development by creating jobs and fostering ancillary industries related to hydropower and renewable energy.

In conclusion, the Gezhouba Hydropower Plant stands as a testament to China’s commitment to developing renewable energy sources. With its substantial capacity and pivotal role in the country’s energy infrastructure, Gezhouba exemplifies the potential of hydropower to contribute to sustainable development while addressing the challenges of energy demand and environmental impact. Its ongoing operation highlights the importance of balancing energy production with ecological preservation, a challenge that continues to shape the future of energy generation in China.

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