Global research dynamics on energy supply chain risks under geopolitical, economic and climate policy uncertainty: a bibliometric analysis
地政学的・経済的・気候政策の不確実性下におけるエネルギーサプライチェーンリスクに関する世界の研究動向:文献計量分析 (AI 翻訳)
Aida Bouzir, Anyssa Trimech
🤖 gxceed AI 要約
日本語
本研究は、地政学的リスク、経済政策の不確実性、気候政策の不確実性の枠組みにおけるエネルギーサプライチェーンリスクの研究動向を、文献計量分析により明らかにした。2014年から2025年までの344件の論文を分析し、エネルギーシステムの不確実性、持続可能性と気候政策の統合、サプライチェーンの設計と最適化という3つの主要テーマを特定。研究が効率重視からレジリエンス重視へと移行していることを示した。
English
This bibliometric analysis examines the global research landscape on energy supply chain risks under geopolitical, economic, and climate policy uncertainties. Analyzing 344 publications from 2014-2025, the study identifies three key themes: uncertainty in energy systems, integration of sustainability and climate policy, and supply chain design and optimization. Findings reveal a shift from efficiency-focused to resilience-oriented approaches in energy supply chain research.
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
日本はエネルギー輸入依存度が高く、気候政策(GX)とエネルギー安全保障の両立が重要である。本稿は、エネルギーサプライチェーンリスクに関する国際的な研究トレンドを俯瞰し、日本における政策立案や研究の方向性に示唆を与える。
In the global GX context
As climate policy uncertainty and geopolitical risks reshape global energy supply chains, this paper provides a structured overview of the research field. It highlights the growing emphasis on resilience and sustainability, which aligns with global efforts such as the IEA's work on energy security and the IPCC's focus on climate risks.
👥 読者別の含意
🔬研究者:Provides a comprehensive bibliometric mapping of the energy supply chain risk field, identifying key themes and future research directions.
🏛政策担当者:Offers insights into how research is evolving to address the intersection of climate policy, energy security, and geopolitical risks, informing policy formulation.
📄 Abstract(原文)
Purpose This research aims to examine the global academic landscape of energy supply chain risk within the framework of geopolitical risk, economic policy uncertainty and climate policy uncertainty. It explores the intellectual structure, overarching research topics and trends that are shaping the development of this fast-developing area. Design/methodology/approach To achieve its objective, the authors used bibliometric techniques to analyse a data set of 344 publications from the Web of Science Core Collection between 2014 and 2025. The use of advanced bibliometric techniques enabled the authors to map the intellectual structure of the field; identify the common themes and trends across the corpus; and examine the collaborations amongst researchers. Findings This study reveals a marked and continuous rise in research on energy supply chain risks, highlighting its increasing importance and interdisciplinary scope. The literature is primarily structured around three key themes: uncertainty in energy systems, the integration of sustainability and climate policy and the design and optimisation of supply chains. Findings also emphasise the growing role of uncertainty management, environmental performance, financial instability and simulation-based modelling in enhancing risk management. Overall, the field has shifted from efficiency-focused approaches towards resilience-oriented energy systems capable of adapting to complex, interconnected and evolving disruptions across global supply chains. Originality/value This study contributes to the literature by providing an integrated bibliometric framework that connects geopolitical, economic and climate policy uncertainties within energy supply chain research. Unlike previous studies that examined these dimensions separately, this study highlights the transition from efficiency-oriented models towards resilience-driven and sustainability-oriented systems while identifying emerging research directions related to digitalisation, predictive modelling and sustainable energy transitions.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1108/cr-03-2026-0181first seen 2026-06-29 04:56:07 · last seen 2026-06-29 04:56:10
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