Related Experiment Video
Updated: Nov 16, 2025

Combining Fluidic Devices with Microscopy and Flow Cytometry to Study Microbial Transport in Porous Media Across Spatial Scales
Published on: November 25, 2020
Percolation of heterogeneous flows uncovers the bottlenecks of infrastructure networks
Homayoun Hamedmoghadam1, Mahdi Jalili2, Hai L Vu3
1Institute of Transport Studies, Faculty of Engineering, Monash University, Melbourne, VIC, Australia. homayoun.hamed@monash.edu.
Abstract:
Whether it be the passengers' mobility demand in transportation systems, or the consumers' energy demand in power grids, the primary purpose of many infrastructure networks is to best serve this flow demand. In reality, the volume of flow demand fluctuates unevenly across complex networks while simultaneously being hindered by some form of congestion or overload. Nevertheless, there is little known about how the heterogeneity of flow demand influences the network flow dynamics under congestion. To explore this, we introduce a percolation-based network analysis framework underpinned by flow heterogeneity. Thereby, we theoretically identify bottleneck links with guaranteed decisive impact on how flows are passed through the network. The effectiveness of the framework is demonstrated on large-scale real transportation networks, where mitigating the congestion on a small fraction of the links identified as bottlenecks results in a significant network improvement.
Related Concept Videos
Multiple Pipe Systems
Series Configuration
In a series configuration, fluid flows sequentially from one pipe...
Uniform Depth Channel Flow: Problem Solving
Rapidly Varying Flow
Turbulent Flow
Plane Potential Flows
Uniform...
Uniform Depth Channel Flow

