Overview
UMTRU (NEW) is an 11.2 MW hydroelectric power plant located in India. It is operational and contributes to the region's renewable energy capacity.
UMTRU (NEW) is a hydroelectric power plant in India with an installed capacity of 11.2 MW. The facility is currently operational, supporting the country's growing renewable energy infrastructure. As a small-scale hydro plant, it plays a role in local power generation and grid stability. Hydroelectric plants like UMTRU (NEW) operate under India's regulatory framework, which includes the Electricity Act, 2003 and the National Electricity Policy. These regulations promote renewable energy and set standards for environmental compliance. The plant's technology is typical for small hydro projects, utilizing water flow to generate electricity without direct emissions. The environmental significance of UMTRU (NEW) lies in its renewable energy generation, which displaces fossil fuel-based power and reduces greenhouse gas emissions. Its operation supports India's targets for clean energy capacity and contributes to sustainable development in the region.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems. UMTRU (NEW) operates in a region with seasonal water availability, which influences generation patterns. The plant's small capacity minimizes large-scale environmental disruption, while its renewable output helps reduce reliance on coal-fired power.
Frequently asked questions
UMTRU (NEW) is located in India at coordinates 26.0069 N, 91.8114 E.
UMTRU (NEW) has an installed capacity of 11.2 megawatts (MW).
UMTRU (NEW) is a hydroelectric power plant, generating electricity from flowing water.
Hydroelectric plants in India are regulated under the Electricity Act, 2003, and must comply with environmental clearance requirements from the Ministry of Environment, Forest and Climate Change.
UMTRU (NEW) contributes to India's renewable energy capacity, supporting the national target of 500 GW of non-fossil fuel capacity by 2030.