Hydroelectric Power Plant Operational

Ranjit Sagar Hydroelectric Power Plant, India | 600 MW Renewable Energy Facility

India
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Overview

Ranjit Sagar is a 600 MW hydroelectric power plant located in India. It is an operational facility contributing to the country's renewable energy capacity.

Ranjit Sagar is a hydroelectric power plant situated in India, with a capacity of 600 megawatts. As a renewable energy facility, it plays a significant role in the region's power generation mix, supporting grid stability and reducing reliance on fossil fuels. The plant operates under India's regulatory framework for hydroelectric projects, which includes environmental clearance and water use permits. Hydroelectric plants like Ranjit Sagar typically utilize run-of-river or reservoir-based systems, with the latter providing storage for seasonal demand variations. The technology is well-established, with efficiencies depending on head height and water flow. Environmentally, hydroelectric power generation has a low carbon footprint compared to thermal plants, but can impact local aquatic ecosystems and water flow regimes. Ranjit Sagar's reservoir may support irrigation and flood control, providing multiple benefits beyond electricity generation. The plant's operational status ensures continued contribution to India's renewable energy targets.

Environmental context

Hydroelectric power generation has a low carbon footprint but can alter river ecosystems and water flow. Ranjit Sagar's reservoir may affect local aquatic habitats and sediment transport. The plant's location in a region with seasonal rainfall influences water availability and generation capacity.

Frequently asked questions

Ranjit Sagar hydroelectric plant is located in India, with coordinates approximately 32.44° N, 75.73° E.

Ranjit Sagar has a capacity of 600 megawatts, making it a medium-to-large hydroelectric facility.

Ranjit Sagar is a hydroelectric power plant, which generates electricity using water flow and turbines.

Hydroelectric plants in India are regulated by the Ministry of Environment, Forest and Climate Change, requiring environmental impact assessments and water use permits under the Water (Prevention and Control of Pollution) Act.

Hydroelectric power has low greenhouse gas emissions but can affect aquatic ecosystems, water flow, and sediment transport. Reservoirs may also lead to habitat alteration and methane emissions from decomposing organic matter.
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