Solar PV Operational

Pugachyovsky Solar PV Plant, Russia | Renewable Energy Facility

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Overview

Pugachyovsky is a 15 MW solar PV facility located in Russia. The plant is operational and contributes to the country's growing renewable energy capacity.

Pugachyovsky is a solar photovoltaic (PV) power plant located in Russia, with an installed capacity of 15 MW. The facility is operational and represents a modest-scale solar installation within the Russian renewable energy landscape. The plant operates under Russia's regulatory framework for renewable energy, which includes capacity-based support mechanisms and a target to increase renewable energy generation. Solar PV technology converts sunlight directly into electricity, and this facility contributes to diversifying Russia's energy mix beyond traditional fossil fuels. The Pugachyovsky solar plant plays a role in reducing greenhouse gas emissions and supporting local energy needs. Its operation aligns with national goals to expand renewable energy capacity, though Russia's overall renewable energy share remains relatively low compared to global leaders.

Environmental context

The plant is situated in a region with significant solar irradiation potential, making it suitable for solar PV generation. The facility helps reduce reliance on fossil fuels and contributes to local air quality improvements. Land use for solar farms can impact local ecosystems, but proper siting and management can minimize ecological disruption.

Frequently asked questions

The Pugachyovsky solar PV plant is located in Russia at coordinates 52.125000 N, 48.740000 E.

The Pugachyovsky solar plant has an installed capacity of 15 megawatts (MW).

Yes, the Pugachyovsky solar plant is currently operational.

Russia supports renewable energy through capacity-based auctions and a renewable energy target. The government aims to increase the share of renewables in the energy mix, though progress has been gradual.

Solar PV technology converts sunlight directly into electricity using semiconductor materials. When sunlight hits the solar panels, it excites electrons, generating a direct current that is then converted to alternating current for use.
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