Overview
Khadavasla I&II is a 16 MW hydroelectric power plant in India. It is operational and contributes to the region's renewable energy capacity.
Khadavasla I&II is a hydroelectric power plant located in India, with a capacity of 16 MW. The facility is operational and plays a role in the country's renewable energy portfolio. Hydroelectric power is a key component of India's energy mix, leveraging the country's river systems. The plant operates under India's regulatory framework for hydropower, which includes environmental clearance from the Ministry of Environment, Forest and Climate Change (MoEFCC) and compliance with the Dam Safety Act. As a run-of-river or reservoir-based project, it contributes to grid stability and renewable energy targets. Khadavasla I&II supports local energy needs without direct emissions, aligning with India's goals for sustainable power generation. Its capacity is modest compared to large hydro projects, but it provides reliable baseload power to the surrounding area.
Environmental context
Hydroelectric plants like Khadavasla I&II have a low carbon footprint but can affect local aquatic ecosystems and water flow. The facility's location in India's Western Ghats region, a biodiversity hotspot, necessitates careful environmental management. Sedimentation and downstream water availability are key considerations for sustainable operation.
Frequently asked questions
Khadavasla I&II is a hydroelectric power plant located in India, with coordinates approximately 18.38° N, 73.61° E.
Khadavasla I&II has a capacity of 16 megawatts (MW), making it a small-scale hydroelectric facility.
Khadavasla I&II is a hydroelectric power plant, which generates electricity by harnessing the energy of flowing water.
Hydroelectric plants in India must obtain environmental clearance from the Ministry of Environment, Forest and Climate Change (MoEFCC) and comply with the Dam Safety Act, among other regulations.
Hydroelectric power provides renewable, low-carbon electricity and helps India meet its renewable energy targets, supporting grid stability and reducing dependence on fossil fuels.