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A GIS-based multi-criteria decision-making approach for seismic vulnerability assessment using quantifier-guided OWA operator: a case study of Tehran, Iran

机译:一种基于GIS的多准则决策方法,使用量化指导的OWA运营商进行地震脆弱性评估:伊朗德黑兰的案例研究

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摘要

Earthquakes are one of the most destructive disasters that cause huge damage to structures and human beings. It is not possible to predict the exact location, duration and intensity of an earthquake; however, the probable damages may be predicted in advance. Tehran has suffered from a number of non-standard aged buildings, a high population density and the existence of a number of faults which have made it significantly vulnerable to the risk of earthquakes. In this research, Tehran's earthquake physical vulnerability map has been produced. The main contribution of this research is to take the effect of the optimism degree into account in the problem of seismic vulnerability assessment. The ordered weighted averaging operator is applied to provide a wide range of answers from pessimistic to optimistic solutions based on multicriteria analysis. The results are then compared with the granular computing and intuitionistic fuzzy (Int_Fuzzy) models that indicate 91% and 89% similarity, respectively.
机译:地震是最具破坏性的灾难之一,对建筑物和人类造成了巨大破坏。无法预测地震的确切位置,持续时间和烈度;但是,可能的损害可能会提前进行预测。德黑兰遭受了许多不合标准的老旧建筑物的困扰,人口密度很高,并且存在许多断层,这使其很容易遭受地震危险。在这项研究中,绘制了德黑兰的地震物理易损性图。这项研究的主要贡献是在地震易损性评估问题中考虑了乐观度的影响。有序加权平均算子用于基于多准则分析提供从悲观到乐观解决方案的广泛答案。然后将结果与分别表示91%和89%相似度的粒度计算和直觉模糊(Int_Fuzzy)模型进行比较。

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