Overview
Narimanglam is a 45 MW hydroelectric power plant in India. It operates using hydro power, contributing to the country's renewable energy capacity.
Narimanglam is a hydroelectric power plant located in India, with a capacity of 45 megawatts. The facility is operational and plays a role in the region's power generation mix, leveraging hydro power as a renewable energy source. As a hydroelectric plant, Narimanglam operates without direct fuel combustion, resulting in minimal air emissions compared to fossil fuel-based plants. The facility's capacity places it in the small-to-medium scale range for hydroelectric projects in India. The plant is subject to Indian environmental regulations, including the Environmental Impact Assessment (EIA) notification and water use permits. Hydroelectric plants like Narimanglam provide grid stability and support peak load demands. The facility contributes to India's renewable energy goals and helps reduce reliance on coal-fired generation. Its location in a region with suitable water resources enables consistent 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 India's hilly terrain may involve reservoir creation, which can alter downstream hydrology. Hydro projects often require careful management of water resources and sediment transport.
Frequently asked questions
Narimanglam is located in India, with coordinates approximately 9.95°N, 76.98°E.
Narimanglam has a capacity of 45 megawatts (MW), making it a small-to-medium scale hydroelectric facility.
Narimanglam is a hydroelectric power plant, using water flow to generate electricity.
Hydroelectric projects in India must comply with the Environmental Impact Assessment (EIA) notification, Forest Conservation Act, and Wildlife Protection Act, among others.
Hydroelectric power has low greenhouse gas emissions but can alter river ecosystems, affect fish migration, and change sediment transport. Proper site selection and mitigation measures are essential.