Overview
RIHAND_Hydro is a 300 MW hydroelectric power plant located in India. It is operational and contributes to the country's renewable energy capacity.
RIHAND_Hydro is a hydroelectric power plant situated in India, with a capacity of 300 megawatts. As a renewable energy facility, it plays a role in India's power generation mix, leveraging water resources to produce electricity. The plant is currently operational, supporting grid stability and clean energy goals. The plant operates under India's regulatory framework for hydroelectric projects, which includes environmental clearances and water use permits. India's power sector is governed by the Central Electricity Authority and state-level regulators, with policies promoting renewable energy expansion. Hydroelectric plants like RIHAND_Hydro typically use run-of-river or reservoir-based systems, depending on local hydrology. Environmentally, hydroelectric power generation has a low carbon footprint compared to fossil fuels, but it can affect local aquatic ecosystems and water flow regimes. The plant's location in India contributes to the country's renewable energy targets, reducing reliance on coal-fired generation. Its operational status ensures continued contribution to the regional power supply.
Environmental context
Hydroelectric power generation has a low carbon footprint but can alter river ecosystems and water availability. The plant's location in India, a country with growing energy demand, supports renewable energy integration. Proximity to populated areas may influence local water resource management.
Frequently asked questions
RIHAND_Hydro is located in India, with coordinates 24.1778° N, 83.0361° E.
RIHAND_Hydro has a capacity of 300 megawatts (MW).
RIHAND_Hydro is a hydroelectric power plant, generating electricity from water flow.
Hydroelectric plants in India must comply with environmental impact assessments, water use permits, and regulations from the Central Electricity Authority and state authorities.
Hydroelectric power has low greenhouse gas emissions but can affect aquatic habitats, water flow, and local ecosystems. Proper management mitigates these impacts.