Overview
Bellagurai is a 40 MW operational solar PV facility located in India. It contributes to the country's renewable energy capacity, supporting grid decarbonization.
Bellagurai is a solar photovoltaic (PV) power plant located in India, with a capacity of 40 megawatts. The facility is operational and plays a role in India's growing renewable energy sector, which is driven by national targets and policy support. The plant uses solar PV technology to convert sunlight into electricity. India has set ambitious renewable energy goals, including 500 GW of non-fossil fuel capacity by 2030, supported by policies such as the National Solar Mission and state-level renewable purchase obligations. Bellagurai's 40 MW capacity places it in the medium-scale category for solar farms in India. The electricity generated by Bellagurai is fed into the regional grid, helping to reduce reliance on fossil fuels and lower carbon emissions. Solar PV plants like this one also contribute to energy security and rural electrification efforts in India, where solar resources are abundant.
Environmental context
Solar PV plants like Bellagurai require large land areas for panel installation, which can lead to land-use change and habitat disruption. However, they produce no emissions during operation and have a low water footprint compared to thermal power. In India, solar farms are often sited in arid or semi-arid regions to minimize agricultural impact, and dual-use (agrivoltaic) approaches are emerging to combine energy generation with farming.
Frequently asked questions
Bellagurai is a solar PV plant located in India, with coordinates approximately 15.775° N, 76.850° E.
Bellagurai has a capacity of 40 megawatts (MW), making it a medium-scale solar photovoltaic facility.
The operator of Bellagurai solar plant is not publicly listed, but it is an operational facility contributing to India's renewable energy grid.
India's solar energy growth is supported by the National Solar Mission, renewable purchase obligations (RPOs), and state-level policies aiming for 500 GW of non-fossil fuel capacity by 2030.
Solar PV panels convert sunlight directly into electricity using semiconductor materials. They have no moving parts, produce no emissions during operation, and require minimal maintenance.