Solar PV Operational

Shikamachi Solar PV Plant | 5.9 MW Facility in Japan

Japan
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Overview

Shikamachi is a 5.9 MW solar PV facility located in Japan. The plant is operational and contributes to the country's renewable energy capacity.

Shikamachi is a solar photovoltaic (PV) power plant located in Japan, with a capacity of 5.9 megawatts (MW). This facility is operational and adds to Japan's growing portfolio of renewable energy sources, supporting the nation's energy transition goals. The plant operates under Japan's regulatory framework for renewable energy, which includes feed-in tariffs and grid connection policies that have driven solar PV deployment. With a capacity of 5.9 MW, Shikamachi is considered a small- to medium-scale solar installation, typical of distributed generation projects in Japan. Solar PV plants like Shikamachi play a key role in reducing greenhouse gas emissions and diversifying Japan's energy mix. The facility's location in the Ishikawa region benefits from adequate solar irradiation, contributing to its operational efficiency and environmental benefits.

Environmental context

Japan's solar PV installations, including Shikamachi, are part of the country's efforts to increase renewable energy share. Solar farms can have land-use impacts, but they produce no direct emissions during operation. The facility's location in a temperate region with moderate solar resources supports its role in clean energy generation.

Frequently asked questions

The Shikamachi solar PV plant is located in Japan, with coordinates approximately 37.0750 N, 136.7550 E.

The Shikamachi solar plant has a capacity of 5.9 megawatts (MW), making it a small- to medium-scale solar PV facility.

Yes, the Shikamachi solar plant is currently operational.

Japan supports solar PV through feed-in tariffs and grid connection policies, which have encouraged the deployment of projects like Shikamachi.

Solar PV plants produce electricity without direct greenhouse gas emissions, helping to reduce reliance on fossil fuels and mitigate climate change.
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