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Stochastic finite element of structural vibration based on sensitivity analysis

机译:基于灵敏度分析的结构振动随机有限元

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In this paper, material properties, geometry parameters and applied loads are assumed to be stochastic, sensitivity computation of structural vibration is presented. The vibration equation of a system is transformed to a static problem by using the New mark method. In order to develop computational efficiency and allow for efficient storage, the Preconditioned Conjugate Gradient method (PCG) is also employed. The PCG is an effective method for solving a large system of linear equations and belongs to methods of iteration with rapid convergence and high precision. An example is given respectively and calculated results are compared to validate the proposed methods.
机译:在本文中,假设材料特性,几何参数和施加的负载是随机的,呈现结构振动的灵敏度计算。通过使用新标记方法将系统的振动方程转换为静态问题。为了开发计算效率并允许有效存储,还采用预先处理的共轭梯度方法(PCG)。 PCG是求解大型线性方程系统的有效方法,属于迭代的方法,具有快速收敛和高精度。分别给出一个例子,并将计算结果进行比较以验证所提出的方法。

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