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Analysis of the Impact of the Francis Scott Key Bridge Collapse on Traffic Flows and the Traffic Network in Baltimore City Xinjiang University

SAE Technical Papers (1906-current) Available online

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Format:
Book
Conference/Event
Author/Creator:
Hao, Zhenxiang, author.
Contributor:
Hu, Jianping
Ma, Chenyuan
Ran, Jin
Zheng, Yuhang
Conference Name:
2025 5th International Conference on Smart City Engineering and Public Transportation (SCEPT2025) (2025-03-28 : Beijing, China)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2025
Summary:
This study focuses on analyzing the impact of the Francis Scott Key Bridge collapse on traffic flow and the traffic network in Baltimore City. By employing the processing of publicly available datasets, the construction of a traffic network model and a comprehensive scoring method and an improved K-means clustering algorithm based on the idea of the rotational method, the following conclusions have been drawn in this study. First, the bridge collapse significantly changed the distribution of traffic flow. According to the AADT data of 17 key traffic nodes, after the bridge collapse, the AADT of all nodes generally increased except for the nodes closest to the tunnel and bridge. For example, traffic nodes around the city center (e.g., nodes with OSMID numbers 37831627 and 602433660) experienced an increase in AADT, suggesting that traffic flows we Second, the 17 key nodes selected represent the major nodes of the Baltimore City traffic system and provide accurate data to support subsequent traffic optimization. Finally, the redistribution of traffic flows after the bridge collapses exacerbated the traffic bottlenecks on the inner and outer ring highways and tunnels and other roads, especially around the collapsed nodes, where the traffic burden increased significantly, reflecting the tendency of shifting traffic flows to the peripheral areas. The results of the study provide a theoretical basis and data support for the optimization of the traffic system in Baltimore City and emergency response to similar events in the future
Notes:
Vendor supplied data
Publisher Number:
2025-99-0034
Access Restriction:
Restricted for use by site license

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