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Application of Macroscopic Fundamental Diagram under Flooding Situation to Traffic Management Measures
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Bangkok, Thailand is prone to flooding after heavy rain. Many road sections become impassable, causing severe traffic congestion and greatly impacting activities. Optimal vehicle management requires the knowledge of flooding impact on road traffic conditions in specific areas. A method is proposed to quantify urban flood situations by expressing traffic conditions in specific ranges using the concept of macroscopic fundamental diagram (MFD). MFD-based judgement allows for a road manager to understand the current traffic situation and take appropriate traffic control measures. MFD analysis identified traffic flow–density and density–velocity relationships by using the shape of the estimated MFD travel time-series plots. Then, results were applied to develop a traffic model with vehicle-flow parameters as a measuring method for road-network performance. The developed model improved road-network traffic-flow performance under different flood conditions. A method is also presented for traffic management evaluation on the assumption that flooding occurs.
Title: Application of Macroscopic Fundamental Diagram under Flooding Situation to Traffic Management Measures
Description:
Bangkok, Thailand is prone to flooding after heavy rain.
Many road sections become impassable, causing severe traffic congestion and greatly impacting activities.
Optimal vehicle management requires the knowledge of flooding impact on road traffic conditions in specific areas.
A method is proposed to quantify urban flood situations by expressing traffic conditions in specific ranges using the concept of macroscopic fundamental diagram (MFD).
MFD-based judgement allows for a road manager to understand the current traffic situation and take appropriate traffic control measures.
MFD analysis identified traffic flow–density and density–velocity relationships by using the shape of the estimated MFD travel time-series plots.
Then, results were applied to develop a traffic model with vehicle-flow parameters as a measuring method for road-network performance.
The developed model improved road-network traffic-flow performance under different flood conditions.
A method is also presented for traffic management evaluation on the assumption that flooding occurs.
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