Solar PV Operational

Harthikote A Solar PV Plant, India - 100 MW Renewable Energy Facility

India
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Overview

Harthikote A is a 100 MW solar PV plant located in India. It contributes to the country's renewable energy capacity under national solar targets.

Harthikote A is a solar photovoltaic (PV) power plant located in India, with a capacity of 100 megawatts (MW). The facility is operational and plays a role in India's expanding solar energy sector, which is a key component of the country's renewable energy goals. The plant operates under India's national solar mission and renewable energy policies, which include targets for solar capacity additions and grid integration. Solar PV technology converts sunlight directly into electricity, and plants of this scale are typical for utility-scale solar projects in India, often located in regions with high solar irradiance. The environmental significance of Harthikote A lies in its contribution to reducing greenhouse gas emissions by displacing fossil fuel-based electricity. Solar PV plants have minimal water usage and low operational emissions, though they require land for installation. The facility supports India's commitment to increasing renewable energy share in the national grid.

Environmental context

The plant is situated in a region with high solar irradiance, typical for solar PV development in India. Land-use considerations for solar farms include potential impacts on local ecosystems and agriculture. However, solar PV has low water consumption and no air emissions during operation, making it a favorable option for sustainable energy generation in arid or semi-arid areas.

Frequently asked questions

Harthikote A is a solar PV plant located in India, with coordinates approximately 14.1440° N, 76.6820° E.

Harthikote A has a capacity of 100 megawatts (MW), making it a utility-scale solar photovoltaic facility.

Harthikote A uses solar photovoltaic (PV) technology to convert sunlight into electricity.

India aims to achieve 500 GW of renewable energy capacity by 2030, and plants like Harthikote A support this goal by adding solar power to the grid.

Solar PV plants produce electricity without greenhouse gas emissions during operation, have low water usage, and help reduce reliance on fossil fuels.
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