首页> 外文期刊>Journal of Coastal Conservation >Integrated remote sensing and GIS techniques for landslide hazard zonation: a case study Wadi Watier area, South Sinai, Egypt
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Integrated remote sensing and GIS techniques for landslide hazard zonation: a case study Wadi Watier area, South Sinai, Egypt

机译:综合遥感和GIS技术进行滑坡灾害分区:以埃及南西奈的Wadi Watier地区为例

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Natural hazard analysis involves mapping and identifying future hazardous zones through the analysis of the controls influencing hazard initiation and occurrence. One of such natural hazard is the landslide. Landslides are amongst the most costly and damaging natural hazards especially in mountain regions and are triggered mainly by seismic activity and/or rainfall. The aim of the present study is to integrate Remote Sensing (RS) and Geographic Information System (GIS) tools to create thematic layers for assessment and the estimation of landslide hazard zones in and surrounding the Wadi Watier area, South Sinai, Egypt. Various factors, variables and/or parameters can be derived from thematic layers such as lithology, structural lineaments, land-cover/land-use, terrain analysis and earthquakes. Intensity risk layers were created by using ERDAS Imagine 9.2, ARC GIS 9.2 and ARC INFO 7.2.1 software. Enhanced Thematic Mapper (ETM+7) Landsat satellite images were used to discriminate and extract structural lineaments, lithology and land-use/land-cover variables for the study area. The Digital Elevation Model (DEM) was generated from digitized topographic maps to produce terrain analysis maps such as; slope, aspect, height elevation, and 3D. The weighting score rating system based on the relative importance of various causal factors derived from RS data and other thematic layers was used for landslide hazard zonation (LHZ). Based on these data, a simple algorithm was created to classify the area into different risk zones. By overlaying all hazard layers a final landslide hazard map was produced. Using trial and error and statistical methods the weight score rating values have been readjusted. GIS integration with RS data can greatly facilitate classifying landslide hazard zones into low risk, moderate risk and high risk by using a slicing operation. Seismic data are integrated with final the LHZ to generate a LHZ scenario map for the future and to draw up an action plan of mitigation measures to avoid the damage, loss of life and socio-economic impacts in the study area.
机译:自然灾害分析涉及通过分析影响灾害发生和发生的控制措施,绘制和识别未来的危险区域。这种自然灾害之一就是滑坡。滑坡是代价最高且破坏力最强的自然灾害之一,尤其是在山区,主要是地震活动和/或降雨引发的。本研究的目的是整合遥感(RS)和地理信息系统(GIS)工具,以创建主题层,以评估和评估埃及南西奈Wadi Watier地区及其周围地区的滑坡灾害带。各种因素,变量和/或参数可以从主题图层中得出,例如岩性,构造构造,土地覆盖/土地利用,地形分析和地震。强度风险层是使用ERDAS Imagine 9.2,ARC GIS 9.2和ARC INFO 7.2.1软件创建的。增强型专题测绘仪(ETM + 7)Landsat卫星图像用于区分和提取研究区域的结构构造,岩性和土地利用/土地覆盖变量。数字高程模型(DEM)是从数字化地形图生成的,以生成地形分析图,例如;坡度,纵横比,高程和3D。基于从RS数据和其他主题图层得出的各种因果因素的相对重要性的加权评分系统用于滑坡灾害分区(LHZ)。基于这些数据,创建了一种简单的算法,将区域划分为不同的风险区域。通过覆盖所有危险层,生成了最终的滑坡危险图。使用试错法和统计方法,对体重评分等级值进行了重新调整。 GIS与RS数据的集成可以通过切片操作极大地帮助将滑坡灾害带分为低风险,中风险和高风险。地震数据与最终的LHZ集成在一起,以生成未来的LHZ方案图,并制定缓解措施的行动计划,以避免研究区域的破坏,生命损失和社会经济影响。

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