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Nonlinear Reduced Order Random Response Analysis of Structures with Shallow Curvature

机译:浅曲率结构的非线性降阶随机响应分析

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摘要

The goal of this investigation is to further develop nonlinear modal numerical simulation methods for application to geometrically nonlinear response of structures with shallow curvature under random loadings. For reduced order analysis, the modal basis selection must be capable of reflecting the coupling in both the linear and nonlinear stiffness. For the symmetric shallow arch under consideration, four categories of modal basis functions are defined. Those having symmetric transverse displacements (ST modes) can be designated as transverse dominated (ST-T) modes and in-plane dominated (ST-I) modes. Those having anti-symmetric transverse displacements (AT modes) can similarly be designated as transverse dominated (AT-T) modes and in-plane dominated (AT-I) modes. The response of an aluminum arch under a uniformly distributed transverse random loading is investigated. Results from nonlinear modal simulations made using various modal bases are compared with those obtained from a numerical simulation in physical degrees-of-freedom. While inclusion of ST-T modes is important for all response regimes, it is found that the ST-I modes become increasingly important in the nonlinear response regime, and that AT-T and AT-I modes are critical in the autoparametric regime.
机译:这项研究的目的是进一步开发非线性模态数值模拟方法,以应用于随机荷载下具有浅曲率的结构的几何非线性响应。对于降阶分析,模态基础选择必须能够在线性和非线性刚度中反映耦合。对于所考虑的对称浅拱,定义了四类模态基函数。具有对称横向位移的那些(ST模式)可以指定为横向支配(ST-T)模式和面内支配(ST-I)模式。具有反对称横向位移(AT模式)的那些可以类似地称为横向主导(AT-T)模式和面内主导(AT-I)模式。研究了铝拱在均匀分布的横向随机载荷下的响应。将使用各种模态基础进行的非线性模态仿真的结果与通过物理自由度的数值模拟获得的结果进行比较。尽管包含ST-T模式对于所有响应机制都很重要,但是发现ST-I模式在非线性响应机制中变得越来越重要,并且AT-T和AT-I模式在自动参数机制中至关重要。

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