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Seismic induced damageability evaluation of steel buildings: a Fuzzy-TOPSIS method

机译:钢结构房屋的地震诱发损伤评估:Fuzzy-TOPSIS法

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Seismic resiliency of new buildings has improved over the years due to better seismic codes and design practices. However, there is still large number of vulnerable and seismically deficient buildings. It is not economically feasible to retrofit and upgrade all vulnerable buildings, thus there is a need for rapid screening tool. Many factors contribute to the damageability of buildings; this makes seismic evaluation a complex multi-criteria decision making problem. Many of these factors are noncommensurable and involve subjectivity in evaluation that highlights the use of fuzzy-based method. In this paper, a risk-based framework earlier proposed by Tesfamariam and Saatcioglu (2008a) is extended using Fuzzy-TOPSIS method and applied to develop an evaluation and ranking scheme for steel buildings. The ranking is based on damageability that can help decision makers interpret the results and take appropriate decision actions. Finally, the application of conceptual model is demonstrated through a case study of 1994 Northridge earthquake data on seismic damage of steel buildings.
机译:多年来,由于更好的抗震规范和设计规范,新建筑的抗震性得到了提高。但是,仍然有大量易受伤害和缺乏地震的建筑物。改造和升级所有易受攻击的建筑物在经济上是不可行的,因此需要快速筛查工具。造成建筑物损坏的因素很多。这使得地震评估成为一个复杂的多准则决策问题。这些因素中有许多是无法估量的,并且涉及评估的主观性,从而突出了基于模糊方法的使用。在本文中,Tesfamariam和Saatcioglu(2008a)先前提出的基于风险的框架使用Fuzzy-TOPSIS方法进行了扩展,并用于开发钢结构建筑的评估和排名方案。该排名基于可损坏性,可以帮助决策者解释结果并采取适当的决策措施。最后,通过1994年Northridge地震中钢结构房屋地震数据的实例研究,证明了概念模型的应用。

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