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Nonlinear Static Analysis Procedures for Seismic Performance Evaluation of Existing Buildings - Evolution and Issues

机译:现有建筑物地震绩效评价的非线性静态分析程序 - 进化与问题

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For a quick performance evaluation of existing buildings under an anticipated ground shaking, the nonlinear static analysis procedures (NSPs) are always an attractive option for practicing engineers. Compared to these NSPs, the detailed nonlinear response history analysis (NLRHA) for a sophisticated 3D finite element model requires far more computational and modeling effort. Sometimes the seismic performance evaluation of a large number of buildings is required in order to assess the seismic vulnerability and loss estimation for a particular study area. The applications and relative accuracy of various available NSPs become even more relevant in such scenarios. Over last several decades, the NSPs have passed through a series of proposed modifications and improvements which kept the interest awakened among practicing engineers and academicians. This paper is a review of all such improvements and provides a brief account of various approaches in the NSPs, their inherent assumptions, sources of uncertainties, limitations and associated challenges.
机译:对于在预期的地面振动下的现有建筑物的快速性能评估,非线性静态分析程序(NSP)始终是练习工程师的有吸引力的选择。与这些NSP相比,复杂的3D有限元模型的详细非线性响应历史分析(NLRHA)需要更多的计算和建模努力。有时需要大量建筑物的地震性能评估,以评估特定研究区域的地震脆弱性和损失估计。各种可用NSP的应用和相对准确性在这种情况下变得更加相关。在持续数十年中,NSP已经通过了一系列拟议的修改和改进,这使得练习工程师和院士人员之间令人瞩目的兴趣。本文是对所有此类改进的审查,并在NSP中的各种方法,其内在的假设,不确定性来源,限制和相关挑战的简要介绍。

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