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Possibilities of Developing Agrivoltaics in Olive Groves in the Island of Crete, Greece

ギリシャ・クレタ島のオリーブ園における営農型太陽光発電の開発可能性 (AI 翻訳)

Vourdoubas John

Zenodoプレプリント2026-05-16#再生可能エネルギーOrigin: EU経営インパクト: コスト削減対象セクター: agriculture
DOI: 10.5281/zenodo.20265951
原典: https://zenodo.org/records/20265951
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🤖 gxceed AI 要約

日本語

クレタ島のオリーブ園に営農型太陽光発電(アグリボルタイクス)を導入する可能性を評価。オリーブ園面積の1%に設置し、被覆率15%と30%で、それぞれクレタ島の年間電力需要の4.69%と9.38%を賄え、年間35,252 tCO2と70,504 tCO2の排出削減が見込まれる。農家の追加収入と気候変動適応に寄与する可能性を示唆。

English

This study assesses the potential of agrivoltaics in olive groves on the island of Crete, Greece. Installing on 1% of olive grove area with coverage ratios of 15% and 30% could meet 4.69% and 9.38% of Crete's annual electricity demand, saving 35,252 and 70,504 tCO2 annually. It suggests limited shading can provide additional income to farmers and enhance climate resilience.

Unofficial AI-generated summary based on the public title and abstract. Not an official translation.

📝 gxceed 編集解説 — Why this matters

日本のGX文脈において

日本では農地転用や営農型太陽光の制度が整備されつつあり、本研究成果は日本の農業地域での再エネ導入と農業維持の両立を検討する際の参考となる。特に、農家の追加収入と気候変動適応の観点は、日本の農業政策にも示唆を与える。

In the global GX context

This study contributes to the global discourse on agrivoltaics as a dual land-use solution for renewable energy and agriculture, aligning with climate mitigation and adaptation goals. It provides empirical estimates of electricity generation and CO2 savings that can inform similar initiatives in Mediterranean and other regions.

👥 読者別の含意

🔬研究者:Provides quantitative estimates of agrivoltaics potential in olive groves, useful for renewable energy and agricultural research.

🏢実務担当者:Farmers and agricultural cooperatives can assess the feasibility of agrivoltaics for additional income and energy self-sufficiency.

🏛政策担当者:Policymakers can use the findings to design incentives for agrivoltaics adoption in agricultural regions.

📄 Abstract(原文)

Solar photovoltaics are in the forefront of clean energy technologies used in the decarbonization of the global power system. Agrivoltaicsis an emerging solar energy technology that allows the dual production of electricity and agricultural products in the same land area. The island of Crete, Greece has abundant solar energy resources while cultivation of olive treesisan old traditionembedded in Cretan culture. The possibility of installing agrivoltaics in olive groves in the island of Crete, Greece has been studied. Several published papers assessing the use of agrivoltaics in olive groves in several countries have been reviewed while agrivoltaics’benefits and challenges have been stated. It has been estimated that installation of agrivoltaics in olive groves in Crete covering 1% of their surface,with coverage ratio at 15% and 30%,can generate electricity meeting 4.69% and 9.38% of Crete’ annual electricity demand respectively. The generated solar electricity can cover the electricity demand in37,537 and 75,075 households respectively in Crete while it will save the emission of 35,252 tCO2and 70,504 tCO2annually. Although there are not sufficient data assessing holistically the use of agrivoltaics in olive groves there are many indications that, under specific conditions, they have many benefits regarding the dual production of electricity and olives. Our results indicate that installation of agrivoltaics in Cretan olive groves, under limited shading, can offer an additional income to farmers increasing their resilience and their adaptation to climate change. Theresultsof the current study could be useful to many stakeholders of Cretan olive industry.

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