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GIS modeling of seismic vulnerability of residential fabrics considering geotechnical, structural, social and physical distance indicators in Tehran using multi-criteria decision-making techniques

机译:考虑使用多标准决策技术考虑德黑兰岩土,结构,社会和物理距离指标的住宅面料地震脆弱性的GIS建模

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The main issue in determining seismic vulnerability is having a comprehensive view of all probable damages related to earthquake occurrence. Therefore, taking into account factors such as peak ground acceleration at the time of earthquake occurrence, the type of structures, population distribution among different age groups, level of education and the physical distance to hospitals (or medical care centers) and categorizing them into four indicators of geotechnical, structural, social and physical distance to needed facilities and from dangerous ones will provide us with a better and more exact outcome. To this end, this paper uses the analytic hierarchy process to study the importance of criteria or alternatives and uses the geographical information system to study the vulnerability of Tehran to an earthquake. This study focuses on the fact that Tehran is surrounded by three active and major faults: Mosha, North Tehran and Rey. In order to comprehensively determine the vulnerability, three scenarios are developed. In each scenario, seismic vulnerability of different areas in Tehran is analyzed and classified into four levels: high, medium, low and safe. The results show that, regarding seismic vulnerability, the faults of Mosha, North Tehran and Rey make, respectively, 6, 16 and 10% of Tehran highly vulnerable, while 34, 14 and 27% is safe.
机译:确定地震脆弱性的主要问题是对与地震发生有关的所有可能损害的全面观点。因此,考虑到地震发生时峰接地加速等因素,结构类型,不同年龄组的人口分布,教育水平和与医院(或医疗中心)的物理距离分为四个距离所需设施和危险设施的岩土工程,结构,社会和物理距离的指标将为我们提供更好,更精确的结果。为此,本文使用分析层次结构研究标准或替代方案的重要性,并使用地理信息系统研究德黑兰对地震的脆弱性。这项研究侧重于德黑兰被三个积极和主要断层包围的事实:Mosha,北德黑兰和雷伊。为了全面确定漏洞,开发了三种情况。在每种情况下,分析德黑兰不同区域的地震脆弱性,分为四个水平:高,中,低,安全。结果表明,关于地震脆弱性,MOSHA,北德黑兰和雷比的故障,分别为6,16和10%的德黑兰高度脆弱,而34,14和27%是安全的。

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