- By:
- Peterson, Steven K; Moore, Amy M; Yang, Xinyi; Afrin, Tanzina; Yodo, Nita; Lu, Pan; Tolliver, Denver
- Page Number:
- 439-451
- Book Title:
- International Conference on Transportation and Development 2026: Transportation Planning and Operations
- Publication Date:
- July 7, 2026
- Publisher Location:
- American Society of Civil Engineers, Detroit, Michigan, United States of America
- Conference Name:
- ASCE International Conference on Transportation & Development (ICTD) 2026
- Conference Location:
- Detroit, Michigan, United States of America
- Conference Sponsor:
- American Society of Civil Engineers
- View DOI Listing:
- https://doi.org/10.1061/9780784487020.039
Abstract
Natural gas plays a central role in the US energy landscape, providing 43% of electricity generation in 2023. Its exclusive recovery ability on pipelines for transmission underscores the importance of understanding the disruption recovery ability of this infrastructure. This study employs a network-based analytical framework integrating geographic information systems (GIS) with multiple centrality measures—betweenness, closeness, degree, and eigenvector—to pinpoint key segments and evaluate the structural robustness of the national pipeline network. Pipelines are grouped by System ID and Operator ID to capture variations across organizational and physical structures. The analysis reveals uneven patterns of network influence, where certain pipelines function as critical connectors or dominant hubs. Spatial mapping highlights geographic dependencies and potential chokepoints, offering a clear view of where targeted risk prevention measures would be most effective. The findings provide practical guidance for prioritizing maintenance, enhancing system robustness, and mitigating risks to ensure a stable and secure energy supply. Future research will expand the framework to incorporate dynamic operational data and real-time network behavior.