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首页> 外文期刊>Journal of Structural Engineering >Improved Computation of Stress Resultants in the p-Ritz Method
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Improved Computation of Stress Resultants in the p-Ritz Method

机译:改进了 p-Ritz 方法中应力结果的计算

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This paper highlights the problems encountered in bending and vibration analysis of thin plates when using the p-Ritz method for computing the stress resultants, especially the twisting moments and shear forces. In the p-Ritz method, products of mathematically complete two-dimensional polynomial functions and boundary polynomial equations raised to appropriate powers are used to approximate the displacements. This ensures the satisfaction of the geometric boundary conditions. However, it is found that the distributions of the twisting moment and shear forces contain unacceptable oscillations, and for plates with free edges these stress resultants do not satisfy the natural boundary conditions. A method to overcome the aforementioned problems is proposed here. The penalty function method is used to satisfy the natural boundary conditions and postprocessing of the stress resultants to eliminate the oscillations. Some examples of static and vibration problems of plates are presented to illustrate the effectiveness of the proposed strategy for overcoming the shortcomings inherent in the p-Ritz method.
机译:本文重点介绍了使用p-Ritz方法计算应力结果时,薄板弯曲和振动分析中遇到的问题,特别是扭转力矩和剪切力。在 p-Ritz 方法中,使用数学上完成的二维多项式函数和边界多项式方程的乘积来近似位移。这确保了几何边界条件的满足。然而,研究发现扭转力矩和剪切力的分布包含不可接受的振荡,并且对于具有自由边缘的板块,这些应力合力不满足自然边界条件。本文提出了一种克服上述问题的方法。采用惩罚函数方法满足应力产生的自然边界条件和后处理,以消除振荡。本文以板材静振问题为例,说明所提出的策略在克服p-Ritz方法固有缺点方面的有效性。

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