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Dynamic reliability analysis for nonlinear structures using stochastic finite element method.

机译:非线性结构动力可靠性的随机有限元分析。

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摘要

An efficient and accurate algorithm is developed to evaluate reliability in the time domain for nonlinear structures subjected to short duration dynamic loadings, including earthquake loading. The algorithm is based on the nonlinear stochastic finite element method (SFEM). Uncertainties in the dynamic and seismic excitation, and resistance-related parameters are incorporated by modeling them as realistically as possible. The uncertainty in them is explicitly addressed.; The proposed algorithm intelligently integrates the concepts of response surface method (RSM), finite element method (FEM), first-order reliability method (FORM), and an iterative linear interpolation scheme. This leads to the stochastic finite element concept. It has the potential to estimate the risk associated with any linear or nonlinear structure that can be represented by a finite element algorithm subjected to seismic loading or any short duration dynamic loadings. In the context of the finite element method, the assumed stress-based finite element algorithm is used to increase its efficiency. Two iterative response surface schemes consisting of second order polynomials (with and without cross terms) are proposed. A mixture of saturated and central composite designs is used to assure both efficiency and accuracy of the algorithm. Sensitivity analysis is used to improve the efficiency further.; The unique feature of the algorithm is that it is capable of calculating risk using both serviceability and strength limit states and actual earthquake loading time histories can be used to excite structures, enabling a realistic representation of the loading condition. The uncertainty in the amplitude of the earthquake is successfully considered in the context of RSM. Uncertainty in the frequency content of an earthquake is considered indirectly by conducting a parametric study to quantify the effect of uncertainty in the frequency content of earthquakes on the overall reliability of structures.; The algorithm has been extensively verified using the Monte Carlo simulation technique. The verified algorithm is used to study the reliability of structures excited by actual earthquake time histories. The results of the numerical examples show that the proposed algorithm can be used accurately and efficiently to estimate the risk for nonlinear structures subjected to short duration time-variant loadings including seismic loading.
机译:针对在短时动态载荷(包括地震载荷)作用下的非线性结构,开发了一种高效,准确的算法来评估时域的可靠性。该算法基于非线性随机有限元方法(SFEM)。动态和地震激励的不确定性以及与电阻相关的参数都通过尽可能逼真的建模来合并。其中的不确定性已得到明确解决。所提出的算法智能地集成了响应面法(RSM),有限元法(FEM),一阶可靠性法(FORM)和迭代线性插值方案的概念。这导致了随机有限元的概念。它有可能估计与任何线性或非线性结构相关的风险,这些结构可以由承受地震荷载或任何短时动态荷载的有限元算法来表示。在有限元方法中,使用了基于应力的有限元算法来提高效率。提出了由二阶多项式(有和没有交叉项)组成的两个迭代响应面方案。饱和和中心复合设计的混合使用可确保算法的效率和准确性。灵敏度分析用于进一步提高效率。该算法的独特之处在于它能够使用可维护性和强度极限状态来计算风险,并且可以使用实际地震荷载时间历史来激发结构,从而真实地表示荷载条件。在RSM中成功地考虑了地震振幅的不确定性。通过进行参数研究来量化地震频率含量的不确定性对结构整体可靠性的影响,可以间接考虑地震频率含量的不确定性。该算法已使用蒙特卡罗模拟技术进行了广泛验证。经过验证的算法用于研究实际地震时程激发的结构的可靠性。数值算例结果表明,所提出的算法可以准确有效地估计非线性结构在短时变载荷(包括地震载荷)作用下的风险。

著录项

  • 作者

    Huh, Jungwon.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Civil.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;机械、仪表工业;
  • 关键词

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