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首页> 外文期刊>Archive of Applied Mechanics >Boundary contour analysis for surface stress recovery in 2-D elasticity and Stokes flow
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Boundary contour analysis for surface stress recovery in 2-D elasticity and Stokes flow

机译:二维弹性和斯托克斯流中表面应力恢复的边界轮廓分析

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摘要

A variant of the boundary element method, called the boundary contour method, offers a further reduction in dimensionality. Consequently, boundary contour analysis of 2-D problems does not require any numerical integration at all. In a boundary contour analysis, boundary stresses can be accurately computed using the approach proposed in Ref. [1]. However, due to singularity, this approach can be used only to calculate boundary stresses at points that do not lie at an end of a boundary element. Herein, it is shown that a technique based on the displacement/velocity shape functions can overcome this drawback. Further, the approach is much simpler to apply, requires less computational effort, and provides competitive accuracy. Numerical solutions and convergence study for some well-known problems in linear elasticity and Stokes flow are presented to show the effectiveness of the proposed approach.
机译:边界元素方法的一种变体,称为边界轮廓法,可以进一步减小尺寸。因此,二维问题的边界轮廓分析根本不需要任何数值积分。在边界轮廓分析中,可以使用参考文献5中提出的方法来精确计算边界应力。 [1]。但是,由于奇异性,此方法只能用于计算不在边界元素末端的点处的边界应力。在此,示出了基于位移/速度形状函数的技术可以克服该缺点。此外,该方法更易于应用,需要较少的计算工作并提供具有竞争力的准确性。给出了线性弹性和斯托克斯流中一些著名问题的数值解和收敛性研究,以证明该方法的有效性。

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