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机构地区:[1]成都理工大学地质灾害防治与地质环境保护国家专业实验室,四川成都610059 [2]云南大学资源环境与地球科学学院,云南昆明650223
出 处:《地理科学》2006年第3期358-363,共6页Scientia Geographica Sinica
基 金:国家自然科学基金(40371018);云南省"十五"科技攻关项目(2001NG44)资助
摘 要:文章探讨了城市泥石流灾害损失评估的系统方法,该方法包括了泥石流堆积泛滥区危险区划、城市土地覆盖类型遥感解译、损失评估模型构建和价值核算4个主要内容。以美国高分辨率的“快鸟”卫星影象为数据源完成了研究区的土地覆盖类型遥感解译,根据泥石流危险程度和土地覆盖类型特征,构建了城市泥石流灾害的损失评估模型。最后,应用G IS提供的分析工具完成了研究区不同土地覆盖类型的泥石流灾害损失计算和评价。This paper approached art integrated methodology for urban debris flow loss estimation. Procedure of the methodology involved debris flow hazard zonation, image interpretation of urban land cover, model establishment for loss estimation, and property value calculation. Debris flow hazard zonation on the alluvial fan of the study area are created by overlaying distributed flow depth and velocity maps, which are produced through the numerical simulation. The possible loss estimation model is formulated based on stage-damage relationships between different debris flow hazard level and land-use features. Nowadays, earth observation techniques can contribute toward more accurate urban debris flow hazard modelling and they can be used to assess damage to residential properties, infrastructure and agricultural crops. For this study, detailed land cover information was derived by using the Quickbird high spatial resolution satellite imagery. Based on detail interpretation for the Quickbird image, the land cover of the study city was classified into 5 first level types, 10 second level types and 16 third level types. We calculated and evaluated the economic loss to different land-use features based on a GIS statistical tool.
关 键 词:城市泥石流 损失评估 高分辨率影象 土地覆盖类型
分 类 号:TP753[自动化与计算机技术—检测技术与自动化装置] P642.23[自动化与计算机技术—控制科学与工程]
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