应对气候变化风险与适应的电网基础设施脆弱性建模

George Karagiannakis, Mathaios Panteli, Sotirios Argyroudis
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引用次数: 0

摘要

电网的恢复能力受到自然灾害的威胁。由于气候变化,与气候相关的灾害正变得越来越频繁和强烈。统计分析清楚地表明,近年来事故(电力故障)及其后果的数量有所上升。因此,了解和量化基础设施对外部压力源的恢复能力至关重要,这对于制定有效的气候变化适应战略至关重要。为实现这一目标,稳健的脆弱性和其他脆弱性模型是必要的。这些模型被用来评估资产损失水平,并对给定的危害强度措施进行损失量化。在这种情况下,进行了全面的文献综述,以阐明现有的脆弱性模型,具体到输电网,配电网和变电站。报告分为三个主要部分:损害评估、脆弱性曲线和气候变化适应建议。第一部分提供了对过去事件、其原因和失败模式的全面回顾。第二部分回顾了分析和实证脆弱性模型,强调需要进一步研究复合和非复合灾害,特别是风暴、洪水、闪电和野火。最后,第三节审查了气候变化背景下的风险缓解和适应战略。这篇综述的目的是提高对在气候变化面前增强电网资产弹性的方法的理解。这些见解对参与风险建模和制定适应战略的风险分析师和政策制定者等各利益攸关方都很有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fragility Modeling of Power Grid Infrastructure for Addressing Climate Change Risks and Adaptation
The resilience of electric power grids is threatened by natural hazards. Climate‐related hazards are becoming more frequent and intense due to climate change. Statistical analyses clearly demonstrate a rise in the number of incidents (power failures) and their consequences in recent years. Therefore, it is of utmost importance to understand and quantify the resilience of the infrastructure to external stressors, which is essential for developing efficient climate change adaptation strategies. To accomplish this, robust fragility and other vulnerability models are necessary. These models are employed to assess the level of asset damage and to quantify losses for given hazard intensity measures. In this context, a comprehensive literature review is carried out to shed light on existing fragility models specific to the transmission network, distribution network, and substations. The review is organized into three main sections: damage assessment, fragility curves, and recommendations for climate change adaptation. The first section provides a comprehensive review of past incidents, their causes, and failure modes. The second section reviews analytical and empirical fragility models, emphasizing the need for further research on compound and non‐compound hazards, especially windstorms, floods, lightning, and wildfires. Finally, the third section examines risk mitigation and adaptation strategies in the context of climate change. This review aims to improve the understanding of approaches to enhance the resilience of power grid assets in the face of climate change. These insights are valuable to various stakeholders, including risk analysts and policymakers, who are involved in risk modeling and developing adaptation strategies.
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