王群敏, 梁收运, 周自强, 蔡汉成. 2010: 多级模糊综合的小城镇地质灾害危险性评价. 工程地质学报, 18(S1): 422-427.
    引用本文: 王群敏, 梁收运, 周自强, 蔡汉成. 2010: 多级模糊综合的小城镇地质灾害危险性评价. 工程地质学报, 18(S1): 422-427.
    WANG Qunmin, LIANG Shouyun, ZHOU Ziqiang, CAI Hancheng. 2010: GEOLOGICAL HAZARD ASSESSMENT OF SMALL TOWNS BASED ON MULTI-LEVEL FUZZY COMPREHENSIVE METHOD. JOURNAL OF ENGINEERING GEOLOGY, 18(S1): 422-427.
    Citation: WANG Qunmin, LIANG Shouyun, ZHOU Ziqiang, CAI Hancheng. 2010: GEOLOGICAL HAZARD ASSESSMENT OF SMALL TOWNS BASED ON MULTI-LEVEL FUZZY COMPREHENSIVE METHOD. JOURNAL OF ENGINEERING GEOLOGY, 18(S1): 422-427.

    多级模糊综合的小城镇地质灾害危险性评价

    GEOLOGICAL HAZARD ASSESSMENT OF SMALL TOWNS BASED ON MULTI-LEVEL FUZZY COMPREHENSIVE METHOD

    • 摘要: 小城镇是连接大城市与乡村的纽带,小城镇的快速发展日益受到地质灾害的显著制约。进行地质灾害危险性评价是小城镇可持续发展的客观需要。以甘肃龙山镇和阿干镇为例,建立了地质灾害危险性评价的三级模糊数学模型和全面详细的评价指标体系,查明了存在的主要地质灾害类型有滑坡、泥石流、不稳定斜坡和地面塌陷等,进行了地质灾害危险性三级模糊综合评价。结果表明,按照不易发、低易发、中易发和高易发四个级别,龙山镇为地质灾害低易发区,阿干镇为地质灾害高易发区,该结果与实际情况较为一致。说明多级模糊综合法是实现地质灾害危险性评价由单因子定性评判过渡为多因子定量综合评判的有效途径。

       

      Abstract: Small towns are the link connecting major cities and villages,their rapidly development is significantly restricted by geological disasters.Geological hazard assessment is objective need for sustainable development of small towns.Taking Longshan town and Agan town as examples,we have established three-level fuzzy comprehensive evaluation model of geological hazard assessment and detailed evaluation index system,identified the main geological disaster types are landslide,debris flow,unstable slope and land collapse et al,carried out three-level fuzzy comprehensive evaluation of geological hazard.The results show that: in accordance with the four level of not easy-happening,low easy-happening,medium easy-happening and high easy-happening,Longshan town is low easy-happening area and Agan town is high easy-happening area of geological hazards,the results are more close to the reality.It shows that multi-level fuzzy comprehensive method is an effective way to achieve the transition from single-factor qualitative evaluation to multi-factor quantitative comprehensive evaluation in the evaluation of geological hazard.

       

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