Investigating Resiliency of Transportation Network Under Targeted and Potential Climate Change Disruptions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Rahimitouranposhti, Maedeh, Sharma, Bharat, Camur, Mustafa Can, Omitaomu, Olufemi A., Li, Xueping
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866913909692170240
author Rahimitouranposhti, Maedeh
Sharma, Bharat
Camur, Mustafa Can
Omitaomu, Olufemi A.
Li, Xueping
author_facet Rahimitouranposhti, Maedeh
Sharma, Bharat
Camur, Mustafa Can
Omitaomu, Olufemi A.
Li, Xueping
contents Ensuring robustness and resilience in intermodal transportation systems is essential for the continuity and reliability of global logistics. These systems are vulnerable to various disruptions, including natural disasters and technical failures. Despite significant research on freight transportation resilience, investigating the robustness of the system after targeted and climate-change driven disruption remains a crucial challenge. Drawing on network science methodologies, this study models the interdependencies within the rail and water transport networks and simulates different disruption scenarios to evaluate system responses. We use the data from the US Department of Energy Volpe Center for network topology and tonnage projections. The proposed framework quantifies deliberate, stochastic, and climate driven infrastructure failure, using higher resolution downscaled multiple Earth System Models simulations from Coupled Model Intercomparison Project Phase version 6. We show that the disruptions of a few nodes could have a larger impact on the total tonnage of freight transport than on network topology. For example, the removal of targeted 20 nodes can bring the total tonnage carrying capacity to 30 percent with about 75 percent of the rail freight network intact. This research advances the theoretical understanding of transportation resilience and provides practical applications for infrastructure managers and policymakers. By implementing these strategies, stakeholders and policymakers can better prepare for and respond to unexpected disruptions, ensuring sustained operational efficiency in the transportation networks.
format Preprint
id arxiv_https___arxiv_org_abs_2506_19102
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Investigating Resiliency of Transportation Network Under Targeted and Potential Climate Change Disruptions
Rahimitouranposhti, Maedeh
Sharma, Bharat
Camur, Mustafa Can
Omitaomu, Olufemi A.
Li, Xueping
Applications
Physics and Society
Ensuring robustness and resilience in intermodal transportation systems is essential for the continuity and reliability of global logistics. These systems are vulnerable to various disruptions, including natural disasters and technical failures. Despite significant research on freight transportation resilience, investigating the robustness of the system after targeted and climate-change driven disruption remains a crucial challenge. Drawing on network science methodologies, this study models the interdependencies within the rail and water transport networks and simulates different disruption scenarios to evaluate system responses. We use the data from the US Department of Energy Volpe Center for network topology and tonnage projections. The proposed framework quantifies deliberate, stochastic, and climate driven infrastructure failure, using higher resolution downscaled multiple Earth System Models simulations from Coupled Model Intercomparison Project Phase version 6. We show that the disruptions of a few nodes could have a larger impact on the total tonnage of freight transport than on network topology. For example, the removal of targeted 20 nodes can bring the total tonnage carrying capacity to 30 percent with about 75 percent of the rail freight network intact. This research advances the theoretical understanding of transportation resilience and provides practical applications for infrastructure managers and policymakers. By implementing these strategies, stakeholders and policymakers can better prepare for and respond to unexpected disruptions, ensuring sustained operational efficiency in the transportation networks.
title Investigating Resiliency of Transportation Network Under Targeted and Potential Climate Change Disruptions
topic Applications
Physics and Society
url https://arxiv.org/abs/2506.19102