Climate change and photovoltaic adaptation: A bibliometric analysis.
気候変動と太陽光発電適応:計量書誌学的分析 (AI 翻訳)
Söğütlü,, Beyza, Asena Soyluk
🤖 gxceed AI 要約
日本語
この論文は、気候変動と太陽光発電技術の関係を計量書誌学的に分析した。2000-2025年のWeb of Scienceデータを用いてキーワードネットワークや共著関係を調査し、研究動向と知識ギャップを特定。持続可能な建築・都市計画におけるPVシステムの役割を考察している。
English
This paper presents a bibliometric analysis of climate change and photovoltaic adaptation, examining publications from 2000-2025 in Web of Science. It identifies research trends, emerging themes, and knowledge gaps in solar energy technologies and their role in climate change mitigation and adaptation, particularly in building-integrated photovoltaics and sustainable architecture.
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
日本では再生可能エネルギー導入が進む中、気候変動に強い太陽光発電システムの研究は重要。本分析は研究動向の俯瞰に有用だが、国内事例には踏み込んでおらず、日本の政策や実務に直接示唆を与えるものではない。
In the global GX context
Globally, this study provides a systematic mapping of research on climate-resilient solar technologies, useful for identifying collaboration opportunities and research gaps. It contributes to the broader energy transition literature by linking photovoltaic adaptation with climate change, relevant for global renewable energy strategies.
👥 読者別の含意
🔬研究者:This bibliometric analysis helps researchers identify key themes, emerging trends, and collaboration networks in climate-resilient solar energy research.
📄 Abstract(原文)
Climate change is one of the global challenges of the 21st century. It affects natural, urban, and developed regions alike. Rapid industrial growth, population increase, and the intensive use of fossil fuels have led to a sharp increase in greenhouse gas emissions. Global risks, impacts on marine ecosystems, and the increasing frequency of extreme weather events are becoming increasingly severe. These developments pose significant risks for human societies. Under these circumstances, reducing carbon dioxide emissions and transitioning to renewable energy are essential for sustainable development. Sustainable development promises to achieve a more livable physical environment, both at the micro level for countries and at the macro level for the world. Among these technologies, solar energy stands out as a clean and sustainable solution. Ecological approaches have gained significant importance in the world of architecture, especially in recent years, as discussions about how climate-resilient buildings should be designed in in-depth manner. Photovoltaic (PV) systems generate electricity directly at the point of consumption and can be integrated into buildings through roofs, exterior walls, and shading structures. The use of photovoltaic systems as shading elements in buildings is a significant area for architectural studies. Consequently, Building Integrated Photovoltaic (BIPV) systems contribute to renewable energy production, improved energy efficiency, natural temperature regulation, and the construction of climate resilient buildings, particularly in densely populated urban areas. However, climate change itself creates environmental conditions that can impair the performance of photovoltaic power systems. Temperature, dust accumulation, humidity, and extreme weather events can negatively impact the efficiency, durability, and lifespan of solar modules. Therefore, current research focuses on climate-resilient solar technologies, which include improved materials, cooling strategies, and adaptive design methods to enhance the resilience of photovoltaic systems under changing climate conditions. Recent studies increasingly focus on particularly on the design of next-generation solar panels. Although research on solar energy and climate adaptation is increasing, the overall structure and development trends of this field are not yet fully understood. Bibliometric analysis is necessary as a systematic tool to identify key themes within the literature and promote collaboration, serving as the foundation for scientific analysis (Passas, 2024). Therefore, this study examines the relationship between climate change and solar energy technologies using a bibliometric analysis of publications indexed in the Web of Science database (Clarivate Analytics, 2025) between 2000 and 2025. By analyzing keyword networks, co-author collaborations, and institutional and geographic distribution, key research trends, emergingthemes, and knowledge gaps will be identified. Furthermore, selected technical and architectural studies will be examined to highlight the role of photovoltaic systems in climate change mitigation and adaptation strategies within the context of sustainable architecture and urban planning.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.5281/zenodo.19056990first seen 2026-05-18 04:48:01 · last seen 2026-05-24 04:30:36
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