Overview
BASPA is a 300 MW hydroelectric power plant in India. It harnesses hydropower to contribute to the country's renewable energy capacity.
BASPA is a hydroelectric power plant located in India, with a capacity of 300 megawatts. As a hydroelectric facility, it generates electricity by converting the energy of flowing water, making it a renewable energy source. The plant is operational and plays a role in India's power generation mix. India's power sector is regulated by the Central Electricity Authority (CEA) and state-level electricity regulatory commissions. Hydroelectric projects in India must comply with environmental impact assessments and water use regulations. The country has a significant hydroelectric capacity, with plants ranging from small run-of-river to large storage projects. The BASPA plant contributes to grid stability and renewable energy targets. Its operation supports regional electricity supply and reduces reliance on fossil fuels. The facility's location in a mountainous region may involve considerations for local ecosystems and water management.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems and water flow regimes. The BASPA plant's location in a hilly area may involve considerations for sediment transport and fish migration. Proper management of water releases is important to maintain downstream river health.
Frequently asked questions
BASPA is located in India, with coordinates approximately 31.43°N, 78.24°E, in a mountainous region suitable for hydroelectric generation.
BASPA has a capacity of 300 megawatts (MW), making it a medium-to-large hydroelectric facility in India.
BASPA is a hydroelectric power plant, which generates electricity using the kinetic energy of flowing water.
Hydroelectric plants in India must comply with the Electricity Act, 2003, and environmental clearance from the Ministry of Environment, Forest and Climate Change, along with water use permits from state authorities.
BASPA adds renewable hydroelectric capacity to India's grid, supporting the country's target of 500 GW non-fossil fuel capacity by 2030 and reducing greenhouse gas emissions.