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STOCHASTIC TRANSIENT VARIATIONAL PRINCIPLE IN VIBRATION ANALYSIS

机译:振动分析中的随机瞬态变化原理

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This paper demonstrates the dependence of virtual displacements on real displacements, hence on the material properties and loading conditions of the structures. For stochastic structures involved with physical and/or geometrical stochastic parameters, the virtual displacements are regarded as stochastic quantities. Therefore, a general purposes version of stochastic transient variational principle (STVP) is developed for vibration analysis of linear continuum. Probabilistic distributions of random parameters are consistently incorporated. Stochasticity of all random quantities, as well as their variations, is taken into consideration. The second-order perturbation techniques are employed to expand all the random quantities involved in the energy functional. Accordingly, a set of deterministic recursive equations is obtained as the alternative expressions of the stochastic transient variational principle (STVP). On the basis of the STVP, the stochastic finite element method (SFEM) is developed for vibration analysis, so that the roundabout procedures for formulations of the SFEM are avoided.
机译:本文证明了虚拟位移对实际位移的依赖性,因此也取决于结构的材料特性和加载条件。对于涉及物理和/或几何随机参数的随机结构,虚拟位移被视为随机量。因此,开发了通用版本的随机瞬态变分原理(STVP)用于线性连续体的振动分析。随机参数的概率分布始终被纳入。考虑所有随机量的随机性及其变化。使用二阶摄动技术来扩展涉及能量函数的所有随机量。因此,获得了一组确定性递推方程作为随机瞬态变分原理(STVP)的替代表达式。在STVP的基础上,开发了用于振动分析的随机有限元方法(SFEM),从而避免了SFEM配方的回旋程序。

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