Research on the Impact of Heavy Rainfall Flooding on Urban Traffic Network Based on Road Topology: A Case Study of Xi’an City, China
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Data and Processing
2.2.1. Data Sources
2.2.2. Partial Data Processing Methods
- Urban road network data
- 2.
- Data on affected road sections
3. Construction of Urban Road Disaster Impact Indicators
3.1. Indicators for Topological Analysis of Affected Sections
3.1.1. Affected Section Nodes Importance
- Disaster node degree
- 2.
- The edge betweenness of the affected section [17]
3.1.2. Topographic and Geomorphic Characteristics of the Affected Section
3.1.3. Spatial Distribution Characteristics
- Nearest neighbor index
- 2.
- Clustering coefficient
3.2. Indicators for the Impact of the Affected Road Sections on Traffic
3.2.1. Population Affected by the Disaster
3.2.2. Road Network Access Efficiency
3.2.3. Road Network Accessibility
4. Results and Analysis
4.1. Topology of the Affected Section
4.1.1. Importance of Road Sections
- Disaster node degree
- 2.
- The edge betweenness of the affected section
4.1.2. Topographic and Geomorphic Characteristics of the Affected Section
4.1.3. Spatial Distribution Characteristics
- Nearest neighbor index
- 2.
- Clustering coefficient
4.2. Impact on Traffic on Affected Roads
4.2.1. Cumulative Population of Affected Roads
4.2.2. Network Access Efficiency
4.2.3. Accessibility Based on Time Thresholds
5. Occurrence Mechanisms and Governance Recommendations
5.1. Causes of Waterlogging
5.1.1. The Mismatch between the Construction Level of Water Conservancy Facilities and Transportation Planning
5.1.2. Inadequate Road Detail Design
5.1.3. Special Climatic and Construction Conditions
5.2. Governance Recommendations
6. Summary
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
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Time Threshold T | Accessibility | Total Number of People Reachable | Disaster Accessibility | Total Number of People Affected | Percentage of Population Affected |
---|---|---|---|---|---|
10 | 0.1638 | 9.5268 × 105 | 0.1517 | 8.8244 × 105 | 7.37% |
15 | 0.3917 | 2.2776 × 106 | 0.3754 | 2.1831 × 106 | 4.15% |
30 | 0.7990 | 4.6462 × 106 | 0.7895 | 4.5926 × 106 | 1.15% |
45 | 0.9336 | 5.4291 × 107 | 0.9241 | 5.3739 × 107 | 1.02% |
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Liu, J.; Yang, X.; Ren, S. Research on the Impact of Heavy Rainfall Flooding on Urban Traffic Network Based on Road Topology: A Case Study of Xi’an City, China. Land 2023, 12, 1355. https://doi.org/10.3390/land12071355
Liu J, Yang X, Ren S. Research on the Impact of Heavy Rainfall Flooding on Urban Traffic Network Based on Road Topology: A Case Study of Xi’an City, China. Land. 2023; 12(7):1355. https://doi.org/10.3390/land12071355
Chicago/Turabian StyleLiu, Jiayu, Xiangyu Yang, and Shaobin Ren. 2023. "Research on the Impact of Heavy Rainfall Flooding on Urban Traffic Network Based on Road Topology: A Case Study of Xi’an City, China" Land 12, no. 7: 1355. https://doi.org/10.3390/land12071355
APA StyleLiu, J., Yang, X., & Ren, S. (2023). Research on the Impact of Heavy Rainfall Flooding on Urban Traffic Network Based on Road Topology: A Case Study of Xi’an City, China. Land, 12(7), 1355. https://doi.org/10.3390/land12071355