Overview
Meravadar GIS is a 10 MW solar PV facility located in Gujarat, India. The plant is operational and contributes to the region's renewable energy capacity.
Meravadar GIS is a solar photovoltaic (PV) power plant with a capacity of 10 megawatts, located in the state of Gujarat, India. The facility is operational and plays a role in the local renewable energy landscape. Gujarat is a leading state in solar energy deployment, benefiting from high solar irradiance and supportive policies. The plant operates under India's national renewable energy framework, which includes targets under the National Solar Mission and state-level Renewable Purchase Obligations (RPOs). Solar PV technology converts sunlight directly into electricity, and the 10 MW scale places it in the small-to-medium category for utility-scale solar projects in India. The facility's location in Gujarat aligns with the state's ambitious solar capacity goals. Environmentally, the plant contributes to reducing greenhouse gas emissions by displacing fossil fuel-based electricity. Solar PV systems have minimal water consumption and low operational emissions. The facility supports grid stability and energy access in the region, aligning with India's commitment to achieving 500 GW of non-fossil fuel capacity by 2030.
Environmental context
The solar PV plant is situated in Gujarat, a state with high solar insolation, making it ideal for solar energy generation. The facility occupies land that could have alternative uses, but solar installations have a relatively low environmental footprint compared to fossil fuel plants. The region's arid climate minimizes water usage for panel cleaning, and the plant helps reduce local air pollution and carbon emissions.
Frequently asked questions
Meravadar GIS is located in the state of Gujarat, India, near the coordinates 21.736° N, 70.116° E.
Meravadar GIS has a capacity of 10 megawatts (MW) and uses solar photovoltaic technology.
Yes, Meravadar GIS is currently operational.
India's solar energy sector is supported by the National Solar Mission, state-level Renewable Purchase Obligations (RPOs), and various incentives like accelerated depreciation and viability gap funding.
Solar PV generates electricity without emitting greenhouse gases or air pollutants, reduces water usage compared to thermal power, and helps mitigate climate change.