Overview
Seegipalle is a 50 MW operational solar PV facility in India, contributing to the country's renewable energy capacity under national solar targets.
Seegipalle is a 50 MW solar photovoltaic (PV) power plant located in India, near coordinates 13.935°N, 77.490°E. The facility is operational and adds to India's growing solar energy portfolio, aligning with the country's ambitious renewable energy targets. The plant operates under India's national solar mission and renewable purchase obligations (RPOs), which mandate a certain percentage of electricity from renewable sources. With a capacity of 50 MW, it falls within the medium-to-large scale for solar PV in India, contributing to grid stability and energy diversification. Seegipalle supports India's goal of achieving 500 GW of non-fossil fuel capacity by 2030. By generating clean electricity, it reduces reliance on coal-fired power and helps mitigate local air pollution and carbon emissions, benefiting both the environment and regional energy security.
Environmental context
The facility is situated in a region with high solar irradiance, typical of southern India, making it suitable for solar PV generation. The local environmental context includes semi-arid conditions where solar farms can be integrated with minimal water use compared to thermal plants. Land-use impacts are managed through site selection to avoid ecologically sensitive areas, and the plant contributes to reducing greenhouse gas emissions from the regional grid.
Frequently asked questions
Seegipalle solar PV plant is located in India, at approximate coordinates 13.935°N, 77.490°E.
Seegipalle has a capacity of 50 megawatts (MW), making it a medium-to-large scale solar photovoltaic facility.
Yes, Seegipalle is currently operational and generating solar electricity for the Indian grid.
India's solar energy is supported by the National Solar Mission, renewable purchase obligations (RPOs), and state-level policies that promote solar capacity addition.
Seegipalle contributes to India's goal of 500 GW non-fossil fuel capacity by 2030, reducing carbon emissions and supporting energy security.