Overview
Chutak is a 44 MW hydroelectric power plant located in India. It harnesses water flow to generate electricity, contributing to the region's renewable energy capacity.
Chutak is a hydroelectric power plant situated in India, with a capacity of 44 megawatts. As a renewable energy facility, it plays a role in the country's power generation mix, supporting grid stability and clean energy goals. The plant operates under India's regulatory framework for hydroelectric projects, which includes environmental clearance and water use permits. Hydroelectric technology typically involves dams or run-of-river systems, converting kinetic energy from flowing water into electricity. This plant's capacity places it in the small-to-medium scale category for hydroelectric facilities. Chutak contributes to local energy supply and helps reduce reliance on fossil fuels. Its operation supports regional development and aligns with India's targets for increasing renewable energy share. The plant's environmental impact is managed through standard mitigation measures for hydro projects.
Environmental context
Hydroelectric power generation has a relatively low carbon footprint compared to fossil fuel plants, but can affect local aquatic ecosystems and water flow regimes. The Chutak plant's location in a mountainous region may involve considerations for sediment transport and fish migration. Typical hydro projects require careful management of downstream water releases.
Frequently asked questions
The Chutak hydroelectric power plant is located in India, with coordinates approximately 34.4903° N, 76.1137° E.
The Chutak hydroelectric power plant has a capacity of 44 megawatts (MW).
Chutak is a hydroelectric power plant, meaning it generates electricity by harnessing the energy of flowing water.
Hydroelectric plants in India are regulated under the Electricity Act, 2003, and require environmental clearance from the Ministry of Environment, Forest and Climate Change. They must also comply with water use permits and dam safety guidelines.
Hydroelectric power has low greenhouse gas emissions but can alter aquatic habitats, affect fish migration, and change water flow patterns. Mitigation measures such as fish ladders and environmental flow releases are often implemented.