Graph-based functional and structural resilience assessment of urban drainage networks
Authors/Creators
- 1. Unit of Environmental Engineering, Department of Infrastructure Engineering, University of Innsbruck, Innsbruck, Austria.
- 1. Unit of Environmental Engineering, Department of Infrastructure Engineering, University of Innsbruck, Innsbruck, Austria.
Description
This repository contains Python code implementing a physics-guided, graph-based model for resilience assessment of urban drainage networks, as proposed in the paper:
“Functional and structural resilience assessment in urban drainage networks: a physics-guided graph-based surrogate model”
Authors: Mohammad Rajabi, Mohsen Hajibabaei, Aun Dastgir, Robert Sitzenfrei
📘 Overview
The model computes:
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Resilience to structural failures
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Resilience to functional failures
It uses a series of hydraulically informed graph metrics for flow routing and, finally, computes resilience using graph-based formulas.
📂 Files and Folders Structure
├── Functional_resilience.ipynb # Calculate functional resilience under all block rainfall scenarios
├── Functional_resilience_dynamic_rain.ipynb # Calculate functional resilience under all Chicago and Euler Type II rainfall scenarios
├── Structural_resilience.ipynb # Calculate structural resilience for single-pipe failure scenarios
└── input_network/ # Contains the SWMM input file
📬 Contact
Files
Additional details
Identifiers
- Other
- Rajabi, M., Hajibabaei, M., Dastgir, A., & Sitzenfrei, R. (submitted to Water Research). Functional and structural resilience assessment in urban drainage networks: A physics-guided graph-based surrogate model.
Related works
- References
- Other: 10.2166/wst.2022.413 (DOI)
Dates
- Submitted
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2025-08-13
References
- Rajabi, M., Hajibabaei, M., Dastgir, A., & Sitzenfrei, R. (submitted to Water Research). Functional and structural resilience assessment in urban drainage networks: A physics-guided graph-based surrogate model.