Overview
Gangapura is a 7 MW operational solar PV facility located in Rajasthan, India. It contributes to India's renewable energy capacity under national solar targets.
Gangapura is a solar photovoltaic (PV) power plant located in Rajasthan, India, with an installed capacity of 7 MW. The facility is operational and contributes to the region's renewable energy generation. Rajasthan's high solar irradiance makes it an ideal location for solar energy projects. The plant uses standard solar PV technology to convert sunlight into electricity. India has set ambitious renewable energy targets under its National Solar Mission, aiming for 500 GW of non-fossil fuel capacity by 2030. The plant operates under India's renewable energy regulatory framework, which includes renewable purchase obligations (RPOs) and competitive bidding for solar tariffs. The 7 MW scale places Gangapura as a small-to-medium solar installation. It supports local grid stability and reduces dependence on fossil fuels. The facility plays a role in India's transition to cleaner energy, aligning with national goals for sustainable development and energy security.
Environmental context
Rajasthan's arid climate and high solar insolation provide optimal conditions for solar PV generation. The plant's location in a desert region minimizes land-use conflicts with agriculture. Solar energy production avoids air emissions and water consumption associated with thermal power plants, supporting local environmental quality.
Frequently asked questions
The Gangapura solar PV plant is located in Rajasthan, India, at coordinates 27.925° N, 72.891° E.
Gangapura has an installed capacity of 7 megawatts (MW), making it a small-to-medium scale solar photovoltaic facility.
The plant uses solar photovoltaic (PV) technology to convert sunlight into electricity.
India aims for 500 GW of non-fossil fuel capacity by 2030 under its National Solar Mission. Plants like Gangapura contribute to this target and help meet renewable purchase obligations (RPOs) for utilities.
Solar PV generation produces no direct air emissions or water consumption, reducing local pollution and conserving water resources compared to conventional thermal power plants.