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Static and dynamic reliability analysis of frame and shear wall structural systems.

机译:框架和剪力墙结构系统的静态和动态可靠性分析。

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摘要

Effective and accurate algorithms are developed to evaluate the reliability of frame and shear wall structural system subjected to both static and dynamic loadings. The basic deterministic finite element algorithm is based on the assumed stress-based finite element method in which the tangent stiffness can be expressed in explicit form and fewer elements are required to realistically capture the structural behavior. These features are desirable for developing an efficient reliability analysis algorithm for both static and dynamic cases. The presence of shear walls is represented by plate elements. The stiffness matrix for the combined system is then developed. To verify the accuracy of the deterministic algorithm, a 2-bay 2-story building consisting of five similar frames is considered. Only one frame is assumed to have shear walls. The responses of the frame with shear walls subjected to static and dynamic loadings are evaluated. The responses of the same structural system are also evaluated using a commercially available computer program. The results match very well, implying that the deterministic algorithm developed in this study is accurate.; The deterministic algorithm is then extended to consider the uncertainty in the random variables. For the static case, a stochastic finite element-based approach consisting of the reliability approach, the first-order reliability analysis procedure and the finite element method is proposed. For the dynamic case, a hybrid approach consisting of the response surface method, the finite element method, the first-order reliability method and the linear iterative scheme is used. The unique feature of this algorithm is that the earthquake loading can be applied in the time domain. The material and cross-sectional properties, the damping and the magnification factors of earthquake time histories are considered to be random variables in this study. The reliability of a frame without and with shear walls is evaluated for the strength and serviceability performance functions. The results are verified using the Monte Carlo simulation technique.
机译:开发了有效和准确的算法来评估框架和剪力墙结构系统在静态和动态载荷下的可靠性。基本的确定性有限元算法基于假定的基于应力的有限元方法,在该方法中,切线刚度可以以明确的形式表示,并且需要较少的元素来实际捕获结构行为。这些功能对于开发针对静态和动态情况的有效可靠性分析算法都是理想的。剪力墙的存在以板单元为代表。然后为组合系统开发刚度矩阵。为了验证确定性算法的准确性,考虑了由五个相似框架组成的2层2层建筑物。假定仅一帧具有剪力墙。评估了带有剪力墙的框架在静态和动态荷载作用下的响应。还使用可商购的计算机程序评估相同结构系统的响应。结果吻合得很好,表明本研究开发的确定性算法是准确的。然后,将确定性算法扩展为考虑随机变量中的不确定性。对于静态情况,提出了一种由可靠性方法,一阶可靠性分析程序和有限元方法组成的基于随机有限元的方法。对于动态情况,使用了由响应面法,有限元法,一阶可靠性法和线性迭代方案组成的混合方法。该算法的独特之处在于地震荷载可以应用于时域。在这项研究中,地震时间历史的材料和截面特性,阻尼和放大系数被认为是随机变量。评估不带剪力墙和带剪力墙的车架的可靠性,以评估其强度和使用寿命。使用蒙特卡洛模拟技术验证了结果。

著录项

  • 作者

    Lee, Seung Yeol.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:46:46

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