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Evaluation of ASCE-41 Modeling Parameters and Acceptance Criteria through an RC Building Case Study

机译:通过RC建筑案例研究评估ASCE-41建模参数和验收标准

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The ability to simulate the nonlinear dynamic response of RC buildings up to significant levels of component damage is of fundamental importance to evaluate their expected performance for different levels of seismic hazard. In the United States there is an increasing reliance on the provisions in the ASCE-41 standard for developing models to simulate the nonlinear response of structures during strong earthquakes. This paper presents fragility relationships from incremental dynamic analyses performed with ASCE 41 modeling parameters on a non-ductile reinforced concrete building located in Van Nuys, California, that was instrumented during several earthquakes. Analyses were performed for the ground motion sets in FEMA P695 and ground motions from earthquakes recorded at the building site. Results from incremental dynamic analyses are used to evaluate modeling parameters and acceptance criteria in ASCE 41 as well as the calculated intensity measure at collapse.
机译:模拟RC建筑物的非线性动力响应的能力,高达显着水平的组分损坏是对评估不同水平的地震危害的预期性能来说至关重要。在美国,依赖asce-41标准的规定越来越依赖,用于开发模型,以模拟强大地震期间结构的非线性响应。本文介绍了易于动态分析的脆弱关系,在加利福尼亚州van Nuys的非延展性钢筋混凝土建筑上用ASCE 41建模参数进行了增量动态分析。对FEMA P695的地面运动集进行分析,并从建筑工地记录的地震的地面运动。增量动态分析的结果用于评估ASCE 41中的建模参数和验收标准以及崩溃时的计算强度测量。

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