Overview
Waddekothapally is a 42 MW operational solar PV facility in India. It contributes to the country's renewable energy capacity under national solar targets.
Waddekothapally is an operational solar photovoltaic (PV) facility located in India, with a capacity of 42 megawatts (MW). This scale places it in the medium-sized category for solar PV plants in the country, supporting India's growing renewable energy infrastructure. The facility 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 plant's capacity contributes to grid-connected solar generation. As a solar PV installation, Waddekothapally helps reduce greenhouse gas emissions and supports India's goal of 500 GW of non-fossil fuel capacity by 2030. The plant's location in Telangana benefits from high solar irradiance, typical of the region, and its output feeds into the local grid, enhancing energy access and sustainability.
Environmental context
Solar PV plants like Waddekothapally have a low environmental footprint during operation, with no emissions or water consumption. However, land use for large-scale solar can impact local ecosystems. In India, solar installations are often sited on non-agricultural land to minimize conflicts. The facility's location in a semi-arid region reduces pressure on arable land, and the use of solar energy displaces fossil fuel generation, improving local air quality.
Frequently asked questions
Waddekothapally solar plant is located in India, with coordinates approximately 17.505° N, 79.562° E, in the state of Telangana.
Waddekothapally solar plant has a capacity of 42 megawatts (MW), making it a medium-scale solar photovoltaic facility.
Yes, Waddekothapally solar plant is operational and contributes to India's grid-connected solar power generation.
India's solar energy is supported by the National Solar Mission, state-level Renewable Purchase Obligations (RPOs), and targets to achieve 500 GW of non-fossil fuel capacity by 2030.
Solar PV technology generates electricity without emissions or water use, reducing reliance on fossil fuels and lowering greenhouse gas emissions and air pollution.