Risk: Low Hydroelectric Power Plant Operational

Gou Pi Tan Hydroelectric Power Plant, China | 3,000 MW Facility

China
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Overview

Gou Pi Tan is a 3,000 MW hydroelectric power plant in China. It is an operational facility contributing to the country's renewable energy capacity.

Gou Pi Tan is a hydroelectric power plant located in China, with a capacity of 3,000 MW. As a large-scale hydro facility, it plays a significant role in the region's power generation, leveraging the country's abundant water resources for clean energy production. The plant operates under China's regulatory framework for renewable energy, which includes policies promoting hydroelectric development and emission reduction targets. Hydroelectric plants like Gou Pi Tan typically use turbine technology to convert water flow into electricity, with minimal direct emissions compared to fossil fuel plants. Gou Pi Tan contributes to China's grid stability and supports the country's transition to a low-carbon energy mix. Its large capacity indicates a substantial role in meeting regional electricity demand and reducing reliance on coal-fired power generation.

Environmental context

Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems and water flow regimes. The plant's location in China's mountainous region suggests potential impacts on river habitats and sediment transport. However, as a renewable source, it avoids the air emissions associated with fossil fuel plants.

Frequently asked questions

Gou Pi Tan is located in China, with coordinates approximately 27.3744° N, 107.6330° E.

Gou Pi Tan has a capacity of 3,000 megawatts (MW), making it a large-scale hydroelectric facility.

Hydroelectric plants convert the kinetic energy of flowing water into electricity using turbines and generators. Water is typically stored in a reservoir and released through penstocks to spin turbines.

Hydroelectric plants in China are subject to the Renewable Energy Law, which promotes clean energy development, and environmental impact assessments under the Environmental Protection Law.

Hydroelectric power produces no direct air emissions, reduces reliance on fossil fuels, and provides renewable energy. However, it can affect river ecosystems and require careful management of water resources.
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