An Integrated Infrastructure Resilience Approach, from the Geotechnical Asset to the Transport Network

Eng Pub Date : 2024-05-10 DOI:10.3390/eng5020044
Georgios Belokas, C. Saroglou, Tatiana P. Moschovou, E. Vlahogianni
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引用次数: 0

Abstract

The main objective of this work is to present a comprehensive and integrated methodology to enhance the resilience of transportation critical infrastructure (TCI), focusing on the interplay between geotechnical assets and the transport network. Societies are greatly dependent on transport infrastructure systems, and as the mobility of passengers and the transport of freight is continuously growing, a disruption due to natural or man-made hazards creates significant impacts and dysfunctionalities on their operation and necessitates response measures to minimize vulnerability and ensure continuous functionality and robustness through resilience. Therefore, resilience quantification allows the design of ad hoc operation action plans before, during, and after a disruption, considering the dynamics of societal, ecological, and technological (SET) environments. The current work focuses on resilience quantification methodologies for TCIs and on the influence of single geotechnical asset (i.e., slope failure) resilience capacity on the overall system (i.e., national road network) resilience. Two case studies of unexpected transport network disruptions that took place in Greece are presented, and resilience metrics and performance indicators are applied to quantify the influence of the recovery stage.
从岩土资产到运输网络的综合基础设施复原力方法
这项工作的主要目的是提出一种全面、综合的方法来提高交通关键基础设施(TCI)的抗灾能力,重点关注岩土资产与交通网络之间的相互作用。社会在很大程度上依赖于交通基础设施系统,由于客运和货运的流动性不断增长,自然或人为灾害造成的中断会对其运行造成重大影响和功能障碍,因此有必要采取应对措施,最大限度地降低脆弱性,并通过抗灾能力确保持续的功能性和稳健性。因此,考虑到社会、生态和技术(SET)环境的动态变化,复原力量化可以在中断发生之前、期间和之后设计临时运行行动计划。当前工作的重点是 TCI 的复原力量化方法,以及单一岩土资产(如边坡破坏)的复原力对整个系统(如国家公路网)复原力的影响。本文介绍了希腊发生的两起交通网络意外中断的案例研究,并应用复原度量和性能指标来量化恢复阶段的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eng
Eng
CiteScore
2.10
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0.00%
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