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首页> 外文期刊>Journal of vibration and control: JVC >Nonlinear Analysis of Single-Layer Reticulated Spherical Shells Under Static and Dynamic Loads
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Nonlinear Analysis of Single-Layer Reticulated Spherical Shells Under Static and Dynamic Loads

机译:静态和动态载荷下单层网状球壳的非线性分析

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摘要

A nonlinear finite element technique is developed for analyzing the nonlinear static and dynamic responses as well as the nonlinear stability of single-layer reticulated shells under external loads, in which the nonlinear three-dimensional beam elements are employed. Using the updated Lagrangian formulation, we derive a tangent stiffness matrix of three-dimensional beam element, considering the geometric nonlinearity of the element. Moreover, the modified Newton-Raphson method is employed for the solution of the nonlinear equilibrium equations, and the Newmark-β method is adopted for determining the seismic response of single-layer reticulated shells. An improved arc-length method, in which the current stiffness parameter is used to reflect the nonlinear degree of such space structures, is presented for determining the load increment for the structural stability analysis. In addition, an accurate incremental method is developed for computing the large rotations of the space structures. The developed approach is presented in matrix form, which is particularly convenient for developing a computer program. Numerical examples are presented to illustrate the application of the present method and to investigate the effects of the geometrical nonlinearity of the space structures.
机译:提出了一种非线性有限元技术,用于分析单层网壳在外部载荷下的非线性静,动态响应以及非线性稳定性,其中采用了非线性三维梁单元。使用更新的拉格朗日公式,考虑到单元的几何非线性,我们得出了三维梁单元的切线刚度矩阵。此外,采用改进的牛顿-拉夫森法求解非线性平衡方程,采用纽马克-β法确定单层网壳的地震响应。提出了一种改进的弧长法,该方法使用当前的刚度参数来反映这种空间结构的非线性程度,以确定结构稳定性分析的载荷增量。另外,开发了一种精确的增量方法来计算空间结构的大旋转。所开发的方法以矩阵形式表示,这对于开发计算机程序特别方便。数值例子被提出来说明本方法的应用并研究空间结构的几何非线性的影响。

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