Overview
Funayaotsu is a 14 MW solar PV facility located in Japan. The plant is operational and contributes to the country's renewable energy capacity.
Funayaotsu is a solar photovoltaic (PV) power plant located in Japan, with a capacity of 14 megawatts (MW). The facility is operational and represents a medium-scale solar installation within the country's growing renewable energy sector. The plant operates under Japan's regulatory framework for renewable energy, which includes feed-in tariffs and grid-connection policies that have supported solar PV deployment. Japan has set ambitious renewable energy targets as part of its energy mix, and solar power plays a key role in achieving these goals. Funayaotsu contributes to local clean energy generation, helping to reduce reliance on fossil fuels and lower carbon emissions. The facility supports Japan's transition toward a more sustainable energy system, aligning with national climate commitments and the global shift to renewable energy.
Environmental context
Solar PV installations like Funayaotsu require land use for panel arrays, which can impact local ecosystems and visual landscapes. In Japan, where land is limited, ground-mounted solar farms are often sited on hillsides or agricultural areas, potentially affecting biodiversity. However, solar energy produces no emissions during operation, offering significant environmental benefits over fossil fuel generation.
Frequently asked questions
The Funayaotsu solar PV plant is located in Japan, with coordinates approximately 33.9450° N, 133.2130° E.
The Funayaotsu solar plant has a capacity of 14 megawatts (MW), making it a medium-scale solar installation.
Yes, the Funayaotsu solar plant is currently operational.
Japan supports solar energy through feed-in tariffs (FIT) and grid-connection policies, which have driven significant solar PV deployment since the 2012 FIT introduction.
Solar PV is a key component of Japan's renewable energy strategy, helping the country meet its goal of increasing renewable energy share in the power mix to 36-38% by 2030.