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    Toward a Comprehensive Areal Model of Earthquake-Induced Landslides

    Source: Natural Hazards Review:;2009:;Volume ( 010 ):;issue: 001
    Author:
    S. B. Miles
    ,
    D. K. Keefer
    DOI: 10.1061/(ASCE)1527-6988(2009)10:1(19)
    Publisher: American Society of Civil Engineers
    Abstract: This paper provides a review of regional-scale modeling of earthquake-induced landslide hazard with respect to the needs for disaster risk reduction and sustainable development. Based on this review, it sets out important research themes and suggests computing with words (CW), a methodology that includes fuzzy logic systems, as a fruitful modeling methodology for addressing many of these research themes. A range of research, reviewed here, has been conducted applying CW to various aspects of earthquake-induced landslide hazard zonation, but none facilitate comprehensive modeling of all types of earthquake-induced landslides. A new comprehensive areal model of earthquake-induced landslides (CAMEL) is introduced here that was developed using fuzzy logic systems. CAMEL provides an integrated framework for modeling all types of earthquake-induced landslides using geographic information systems. CAMEL is designed to facilitate quantitative and qualitative representation of terrain conditions and knowledge about these conditions on the likely areal concentration of each landslide type. CAMEL is highly modifiable and adaptable; new knowledge can be easily added, while existing knowledge can be changed to better match local knowledge and conditions. As such, CAMEL should not be viewed as a complete alternative to other earthquake-induced landslide models. CAMEL provides an open framework for incorporating other models, such as Newmark’s displacement method, together with previously incompatible empirical and local knowledge.
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      Toward a Comprehensive Areal Model of Earthquake-Induced Landslides

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    contributor authorS. B. Miles
    contributor authorD. K. Keefer
    date accessioned2017-05-08T21:31:36Z
    date available2017-05-08T21:31:36Z
    date copyrightFebruary 2009
    date issued2009
    identifier other%28asce%291527-6988%282009%2910%3A1%2819%29.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/54846
    description abstractThis paper provides a review of regional-scale modeling of earthquake-induced landslide hazard with respect to the needs for disaster risk reduction and sustainable development. Based on this review, it sets out important research themes and suggests computing with words (CW), a methodology that includes fuzzy logic systems, as a fruitful modeling methodology for addressing many of these research themes. A range of research, reviewed here, has been conducted applying CW to various aspects of earthquake-induced landslide hazard zonation, but none facilitate comprehensive modeling of all types of earthquake-induced landslides. A new comprehensive areal model of earthquake-induced landslides (CAMEL) is introduced here that was developed using fuzzy logic systems. CAMEL provides an integrated framework for modeling all types of earthquake-induced landslides using geographic information systems. CAMEL is designed to facilitate quantitative and qualitative representation of terrain conditions and knowledge about these conditions on the likely areal concentration of each landslide type. CAMEL is highly modifiable and adaptable; new knowledge can be easily added, while existing knowledge can be changed to better match local knowledge and conditions. As such, CAMEL should not be viewed as a complete alternative to other earthquake-induced landslide models. CAMEL provides an open framework for incorporating other models, such as Newmark’s displacement method, together with previously incompatible empirical and local knowledge.
    publisherAmerican Society of Civil Engineers
    titleToward a Comprehensive Areal Model of Earthquake-Induced Landslides
    typeJournal Paper
    journal volume10
    journal issue1
    journal titleNatural Hazards Review
    identifier doi10.1061/(ASCE)1527-6988(2009)10:1(19)
    treeNatural Hazards Review:;2009:;Volume ( 010 ):;issue: 001
    contenttypeFulltext
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