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    Analysis of Flood Hazard Alteration: Cascading Effects of Earthquake on Stormwater Collection Network

    Source: Natural Hazards Review:;2022:;Volume ( 023 ):;issue: 003::page 04022012
    Author:
    Morteza T. Marvi
    ,
    Daniël Linders
    DOI: 10.1061/(ASCE)NH.1527-6996.0000556
    Publisher: ASCE
    Abstract: Earthquake can alter flood hazard in a region by impacting the components of stormwater drainage system. A methodology is proposed in this paper to measure flood hazard alteration after an earthquake. The study mainly focuses on flood hazard alteration as a result of the direct impact of an earthquake on a minor drainage system. A minor drainage system is the stormwater collection network where the components such as pipelines and inlets are vulnerable to earth movements. Cracks and breaks are considered as the impacts of earthquake on the pipelines, whereas inlet blockage because of earthquake-generated debris is considered as the impact on the network inlets. The methodology is applied on an entire midsize city to prove its scalability. The minor drainage system of the city is comprised of 564 pipes with the total length of 40 km (25 mi). The pipes are divided into 35 subcatchments, which serve a total area of 6.2  km2 (2.4  mi2) of the city. Several metrics for flood hazard alteration are defined and measured for the case study, which clearly shows alteration of the flood hazard after the earthquake. The metrics are presented in both spatially variable and aggregated formats. Such analysis can help communities to better prepare for possible alteration in flood hazard after an earthquake, to better plan and allocate resources for recovery of the stormwater collection network after an earthquake, and to recognize new flood hazard hot spots.
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      Analysis of Flood Hazard Alteration: Cascading Effects of Earthquake on Stormwater Collection Network

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4282188
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    contributor authorMorteza T. Marvi
    contributor authorDaniël Linders
    date accessioned2022-05-07T20:15:38Z
    date available2022-05-07T20:15:38Z
    date issued2022-03-30
    identifier other(ASCE)NH.1527-6996.0000556.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4282188
    description abstractEarthquake can alter flood hazard in a region by impacting the components of stormwater drainage system. A methodology is proposed in this paper to measure flood hazard alteration after an earthquake. The study mainly focuses on flood hazard alteration as a result of the direct impact of an earthquake on a minor drainage system. A minor drainage system is the stormwater collection network where the components such as pipelines and inlets are vulnerable to earth movements. Cracks and breaks are considered as the impacts of earthquake on the pipelines, whereas inlet blockage because of earthquake-generated debris is considered as the impact on the network inlets. The methodology is applied on an entire midsize city to prove its scalability. The minor drainage system of the city is comprised of 564 pipes with the total length of 40 km (25 mi). The pipes are divided into 35 subcatchments, which serve a total area of 6.2  km2 (2.4  mi2) of the city. Several metrics for flood hazard alteration are defined and measured for the case study, which clearly shows alteration of the flood hazard after the earthquake. The metrics are presented in both spatially variable and aggregated formats. Such analysis can help communities to better prepare for possible alteration in flood hazard after an earthquake, to better plan and allocate resources for recovery of the stormwater collection network after an earthquake, and to recognize new flood hazard hot spots.
    publisherASCE
    titleAnalysis of Flood Hazard Alteration: Cascading Effects of Earthquake on Stormwater Collection Network
    typeJournal Paper
    journal volume23
    journal issue3
    journal titleNatural Hazards Review
    identifier doi10.1061/(ASCE)NH.1527-6996.0000556
    journal fristpage04022012
    journal lastpage04022012-22
    page22
    treeNatural Hazards Review:;2022:;Volume ( 023 ):;issue: 003
    contenttypeFulltext
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