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Estimation of Tsunami Hazard Vulnerability Factors by Integrating Remote Sensing, GIS and AHP Based Assessment

机译:结合遥感,GIS和AHP评估评估海啸危险因素

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Geographic Information Systems (GIS), image processing in remote sensing and analytical hierarchy process (AHP) were used to estimate and classify vulnerability and inundation areas under the Tohoku tsunami event 2011 in the Ishinomaki, Miyagi prefecture, Japan. Acceptable data were obtained from Geoeye-1 satellite image, GSI DEM and field survey. Five factors of elevation, slope, shoreline distance, river distance and vegetation were used to classify the vulnerability and be weighted via AHP. By assessing the estimated and classified vulnerability map and comparing it with the inundation map of the study area, we found that a 13.44 km 2 ) area came under the tsunami vulnerability zone. Inundation areas were located in high and slightly high vulnerability classifications. Kitakami river and the Unga water canal played the role of flooding strips by transporting tsunami waves into the hinterland. This research is important to understand the roles of main topographical factors in a tsunami disaster.
机译:在日本宫城县石卷市的2011年东北海啸事件下,地理信息系统(GIS),遥感图像处理和层次分析法(AHP)用于估计和分类脆弱性和淹没区域。可接受的数据来自Geoeye-1卫星图像,GSI DEM和现场调查。使用海拔,坡度,海岸线距离,河流距离和植被这五个因素对脆弱性进行分类,并通过层次分析法对其进行加权。通过评估估计和分类的脆弱性图,并将其与研究区域的淹没图进行比较,我们发现海啸脆弱性区域下有一个13.44 km 2的区域。淹没区位于脆弱性较高和较高的类别中。北上市河和翁加水渠通过将海啸波传输到腹地起到了淹没地带的作用。这项研究对于了解主要地形因素在海啸灾难中的作用非常重要。

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