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A GIS-based seismic hazard, building vulnerability and human loss assessment for the earthquake scenario in Tabriz

机译:针对大不里士地震场景的基于GIS的地震危险,建筑物易损性和人员损失评估

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摘要

A GIS-oriented procedure that may partially illuminate the consequences of a possible earthquake is presented in two main steps (seismic microzonation and vulnerability steps) along with its application in Tabriz (a city in NW Iran). First, the detailed geological, geodetical, geotechnical and geophysical parameters of the region are combined using an Analytic Hierarchy Process (AHP) and a deterministic near-field earthquake of magnitude 7 in the North Tabriz Fault is simulated. This simulation provides differing intensities of ground shaking in the different districts of Tabriz. Second, the vulnerability of buildings, human losses and basic resources for survivors is estimated in district two of the city based on damage functions and relational analyses. The results demonstrate that 69.5% of existing buildings are completely destroyed, and the rate of fatalities is approximately 33% after a nighttime scenario. Finally, the same procedure was applied to an actual earthquake (first event on the 11th of August, 2012 of the Ahar twin earthquakes) to validate the presented model based on two aspects: (1) building damages and (2) seismic intensity. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在两个主要步骤(地震微区划和脆弱性步骤)中介绍了面向GIS的过程,该过程可能部分阐明了可能发生的地震的后果,并在大不里士(伊朗西北部城市)中应用了该过程。首先,使用层次分析法(AHP)将区域的详细地质,大地测量,岩土工程和地球物理参数进行组合,并模拟北大不里士断裂中7级的确定性近场地震。该模拟在大不里士的不同地区提供了不同的地面震动强度。其次,根据破坏功能和相关分析,估计了该市第二区的建筑物易损性,人员损失和幸存者的基本资源。结果表明,在夜间情况下,有69.5%的现有建筑物被完全摧毁,死亡人数约为33%。最后,将相同的程序应用于实际地震(2012年8月11日阿哈尔双胞胎地震的第一次事件),以基于两个方面验证所提出的模型:(1)建筑破坏和(2)地震烈度。 (C)2014 Elsevier Ltd.保留所有权利。

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