China

Nuozhadu Dam — 5,850 MW Hydroelectric

Hydroelectric Renewable Verified

Nuozhadu Dam is a 5,850 MW hydro power plant located in China. View location, capacity, and technical details.

Capacity
5,850 MW

Installed

Commissioned
2014

Year online

Owner
China Southern Power Grid

Operator

Location
22.64, 100.43

Coordinates

Insights

#16
largest in China
#20
largest Hydroelectric worldwide
#51
largest worldwide
2014
30 yrs newer than avg
21
operated by China Southern Power…
10
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
5,850 MW
Commissioned
2014
Status
Operational
Owner
China Southern Power Grid
Country
China
Coordinates
22.641, 100.429
Wikipedia
Link

Carbon Footprint

Annual CO₂
491,962 t

tonnes / year

Lifetime CO₂
39,356,928 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

106,948
cars per year
65,595
homes per year
22,361,891
trees to offset

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

Nearby Plants

About this plant

The Nuozhadu Hydropower Plant, with a total installed capacity of 5,850 megawatts (MW), stands as one of the largest hydroelectric power stations in China and plays a vital role in the country’s energy sector. Located on the Lancang River in Yunnan Province, this facility is part of a series of hydropower projects that harness the river’s flow to generate electricity, contributing significantly to the national grid. Opened in 2014, the plant is designed to not only produce energy but also to help with flood control and irrigation, showcasing the multifaceted benefits of hydropower in the region.

Hydropower, as a renewable energy source, is generated by converting the kinetic energy of flowing water into electricity. The Nuozhadu plant utilizes a dam structure to create a reservoir that stores water, which is then released through turbines to generate power. This method of electricity generation is characterized by its high efficiency and low operational costs once the infrastructure is in place. The plant’s capacity allows it to produce a substantial amount of electricity, which helps meet the growing energy demands of China, especially in the southern and southwestern regions. As the country shifts towards more sustainable energy sources, hydropower remains a cornerstone of its energy strategy, reducing reliance on coal and minimizing greenhouse gas emissions.

The environmental impact of the Nuozhadu Hydropower Plant is a complex issue. On one hand, it provides a clean energy alternative to fossil fuels, helping to mitigate air pollution and combat climate change. The vast reduction in carbon emissions associated with hydropower generation is significant for China’s goals of achieving peak carbon emissions by 2030 and carbon neutrality by 2060. However, the construction and operation of large dams can also lead to ecological disruption. The flooding of land for reservoir creation can displace local communities and wildlife, and changes in water flow can affect aquatic ecosystems downstream. Therefore, while the Nuozhadu plant contributes positively to energy generation, it also requires ongoing management to address its ecological footprint.

Regionally, the Nuozhadu plant plays an essential role in stabilizing the local economy. By providing a reliable source of electricity, it supports industrial growth and fosters local developments. Furthermore, the plant has created jobs during its construction and operation phases, contributing to economic activity in Yunnan Province. The facility also enhances energy security in the region, particularly given the intermittent nature of other renewable sources like solar and wind.

In summary, the Nuozhadu Hydropower Plant exemplifies the dual role of large-scale hydropower facilities in modern energy systems: they are pivotal in meeting energy needs while also presenting challenges that require careful management. As China continues to develop and expand its energy infrastructure, the lessons learned from Nuozhadu will be invaluable in balancing energy production, environmental stewardship, and regional development.

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