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首页> 外文期刊>Journal of Geographic Information System >Integrated GIS, Remote Sensing and Survey Data for Damage Assessment of Buildings in Tsunami Event, Ishinomaki City, Japan
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Integrated GIS, Remote Sensing and Survey Data for Damage Assessment of Buildings in Tsunami Event, Ishinomaki City, Japan

机译:日本石卷市海啸事件中建筑物损毁评估的集成GIS,遥感和调查数据

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The 2011 Tsunami event in the eastern coastal area of Japan caused a huge amount of damages or devastations on buildings. To this date, several field surveys have been conducted which provide detailed information about inundation areas and building damage characteristics in attacking east coastal areas by this tsunami. In this study, building damage data of Ishinomaki city, with special attention to the plain coast affected area, are classified and analyzed using data surveyed by the Ministry of Lands, Infrastructure and Transportation of Japan (MLIT) for more than 52,000 structures. The classification includes information on six levels of damage, four types of building materials and damages due to tsunami inundation for each building material which are necessary information for an effective hazard mitigation. Notably, damage level percentage distribution of different building materials is plotted for different inundation depth ranges in several sets of figures. This graphic illustration not only shows a better resistant performance of Reinforced Concrete (RC) and steel buildings over wood or other buildings for all inundation depth ranges, but also can explain clearly the inundation-induced damage behavior for each building material as well as the threshold depth for each damage level. Moreover, this research contains an analysis of vulnerable areas due to the coastal topography and the geographical factors. Surveyed data provided by Geospatial information authority of Japan (GSI) that classifies Ishinomaki plain coast area into three classes are compared with the damage map produced using an Analytical Hierarchy Process (AHP) methodology in ArcGIS 10.2 environment. The influence of key geographical features on tsunami-induced building damage, notably Kitakami river and water canals flooding, is taken into account with respect to the weighting of factors. A good agreement produced building damage map with surveyed GSI data shows the power of a GIS tool based on the AHP approach for tsunami damage assessment. The results of this study are useful to understand the damage behavior of buildings with different structural materials located in coastal areas vulnerable to the tsunami disaster.
机译:2011年日本东部沿海地区发生的海啸事件对建筑物造成了巨大的破坏或破坏。迄今为止,已经进行了几次野外调查,这些调查提供了有关这场海啸袭击东部沿海地区的淹没区域和建筑物破坏特征的详细信息。在这项研究中,使用日本国土交通省(MLIT)对52,000多个建筑物进行调查的数据,对石卷市的建筑破坏数据进行了分类和分析,并特别关注了平原海岸受灾地区。该分类包括有关六种破坏程度,四种建筑材料和每种建筑材料因海啸淹没造成的破坏的信息,这些信息对于有效减轻危害是必不可少的。值得注意的是,在几组图中绘制了针对不同淹没深度范围的不同建筑材料的破坏程度百分比分布。该图形说明不仅显示了在所有淹没深度范围内,钢筋混凝土(RC)和钢结构建筑物在木材或其他建筑物上的抵抗性能更好,而且可以清楚地说明每种建筑物材料的淹没诱导的破坏行为以及阈值每个伤害等级的深度。此外,该研究还对由于沿海地形和地理因素造成的脆弱地区进行了分析。将日本地理空间信息管理局(GSI)提供的将石卷平原沿海地区分为三类的调查数据与使用ArcGIS 10.2环境中的层次分析法(AHP)方法生成的损坏图进行比较。考虑因素的权重,考虑了关键地理特征对海啸引起的建筑破坏的影响,特别是北上市河和水渠的洪水。与调查的GSI数据达成的良好一致的建筑破坏图显示了基于AHP方法进行海啸破坏评估的GIS工具的强大功能。这项研究的结果有助于了解位于海啸灾区沿海地区的具有不同结构材料的建筑物的破坏行为。

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