Overview
Nellis Solar PV II is a 15 MW solar photovoltaic facility in Nevada, United States, owned by Nevada Power Co. It contributes to the state's renewable energy portfolio.
Nellis Solar PV II is a solar photovoltaic power plant located in Nevada, United States, with a capacity of 15 megawatts. The facility is owned by Nevada Power Co and is currently operational, adding to the region's renewable energy generation capacity. The plant operates under the regulatory framework of the United States, which includes the Inflation Reduction Act (IRA) and state-level Renewable Portfolio Standards (RPS). Nevada's RPS targets 50% renewable energy by 2030, and solar PV facilities like Nellis Solar PV II play a key role in meeting these goals. The 15 MW capacity places it in the small-to-medium scale range for utility-scale solar. Environmentally, the facility supports grid integration of renewable energy and reduces reliance on fossil fuels. Solar PV has minimal operational emissions, though land use and visual impacts are considerations. The plant's location in the Mojave Desert region benefits from high solar irradiance, optimizing energy production.
Environmental context
Solar PV installations like Nellis Solar PV II require land area for panel arrays, which can affect local ecosystems and land use. In arid regions like Nevada, water use for panel cleaning is minimal compared to conventional power plants. The facility contributes to reducing greenhouse gas emissions and supports grid stability through distributed generation.
Frequently asked questions
Nellis Solar PV II is located in Nevada, United States, near the Nellis Air Force Base area.
The facility has a capacity of 15 megawatts (MW), making it a small-to-medium scale solar PV plant.
The plant is owned by Nevada Power Co, a utility company serving the region.
Nevada's Renewable Portfolio Standard (RPS) requires 50% renewable energy by 2030, supported by federal incentives from the Inflation Reduction Act (IRA).
Solar PV generates electricity without direct emissions, reducing greenhouse gases and air pollutants. It also uses minimal water compared to thermal power plants.