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首页> 外文期刊>Canadian Journal of Civil Engineering >Seismic performance of a full-scale, reinforced high-performance concrete building. Part II: Analytical study
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Seismic performance of a full-scale, reinforced high-performance concrete building. Part II: Analytical study

机译:大型增强型高性能混凝土建筑物的抗震性能。第二部分:分析研究

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摘要

Full-scale tests provide valuable information on the characteristics of building structures that can be used to evaluate design methods, to calibrate modelling techniques, and to determine damage corresponding to loading levels. These tests are scarce due to the enormous requirements in testing space and specialized testing equipment. The seismic behaviour of a full-scale, two-storey, reinforced high-performance concrete building designed with moderate ductility detailing is evaluated by pseudo-dynamic testing, during which increasing seismic loads are applied, resulting in increasing levels of permanent damage to the structure. This paper presents the analytical predictions of the test results using a global force-displacement parameters approach and a refined approach, half-way between global modelling and finite element modelling, using force-strain parameters and damage mechanics principles. Identification of the parameters required to describe the response parameters are presented together with a description of the numerical procedures used in each approach. It is shown that the predictions are in good agreement with the test results. Advantages and disadvantages of each approach are highlighted in the context of performance-based analysis and design.
机译:全面测试可提供有关建筑结构特征的有价值的信息,这些信息可用于评估设计方法,校准建模技术以及确定与载荷水平相对应的损坏。由于对测试空间和专用测试设备的巨大要求,这些测试十分稀缺。通过拟动力试验评估了具有中等延性细节的全尺寸两层钢筋高性能混凝土建筑的抗震性能,在此过程中,施加了不断增加的地震载荷,从而导致对建筑物的永久性破坏水平提高。本文介绍了使用整体力-位移参数方法和精细方法对测试结果的分析预测,使用力-应变参数和损伤力学原理在整体建模和有限元建模之间进行了研究。描述了描述响应参数所需的参数,并给出了每种方法中使用的数字过程的描述。结果表明,预测结果与试验结果吻合良好。在基于性能的分析和设计中强调了每种方法的优点和缺点。

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