Hydroelectric Power Plant Operational

Numappara Hydroelectric Power Plant, Japan | 675 MW Capacity

Japan
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Overview

Numappara is a 675 MW hydroelectric power plant in Japan, operated by EPDC. It contributes to the country's renewable energy capacity.

Numappara is a hydroelectric power plant located in Japan, with a capacity of 675 megawatts. It is owned and operated by EPDC, a key player in Japan's energy sector. The plant plays a significant role in the region's power generation, leveraging Japan's mountainous terrain and water resources. As a hydroelectric facility, Numappara utilizes the natural flow of water to generate electricity, a technology that is well-established in Japan. The plant's capacity places it in the medium-to-large scale for hydroelectric plants globally. Japan's regulatory framework for hydroelectric power includes the Renewable Energy Act, which promotes clean energy sources. Environmentally, hydroelectric power is a low-carbon energy source, but it can have local ecological impacts such as altered water flows and effects on aquatic habitats. Numappara's operations are likely subject to environmental assessments to mitigate such impacts. The plant supports Japan's energy mix and contributes to grid stability.

Environmental context

Hydroelectric power generation, while renewable, can affect local ecosystems through changes in water flow and temperature. Numappara's location in Japan's mountainous region may involve considerations for aquatic habitats and sediment transport. The plant's operation aligns with Japan's goals for clean energy, but careful management is needed to balance power generation with environmental stewardship.

Frequently asked questions

Numappara is located in Japan, at coordinates 37.093800 N, 139.911600 E.

Numappara has a capacity of 675 megawatts, making it a medium-to-large hydroelectric facility.

Numappara is owned and operated by EPDC, a Japanese electric power development company.

Hydroelectric plants in Japan operate under the Renewable Energy Act and must comply with environmental impact assessments and water usage regulations.

Hydroelectric power is low-carbon but can alter water flow, affect aquatic habitats, and require careful management to minimize ecological disruption.
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