首页> 外文期刊>International Journal for Numerical Methods in Engineering >Numerical evaluation of harmonic Green's functions for triclinic half-space with embedded sources - Part II: A 3D model
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Numerical evaluation of harmonic Green's functions for triclinic half-space with embedded sources - Part II: A 3D model

机译:具有嵌入源的三斜半空间谐波格林函数的数值评估-第二部分:3D模型

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摘要

The displacement and stress Green's functions for it 3D triclinic half-space with embedded harmonic point load is considered. The resulting displacement and stress fields are expressed in terms of triple Fourier integrals. The first integral was evaluated using contour integration and the 3D Green's functions were obtained as a superposition of 2D results Over the azimuthal angle. The resulting algorithm developed for evaluation of the Green's functions avoids repeated calculations of the same quantities and it utilizes the vectorized manipulation within MATLAB environment. The algorithm places no restriction on material properties, frequency and location of source and observation points. Extensive testing of the numerical results was performed for both displacement and stress. The tests confirm the accuracy of the numerical results. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:考虑了位移和应力格林的函数,其中包含嵌入谐波点负载的3D三斜半空间。产生的位移和应力场用三重傅立叶积分表示。使用轮廓积分对第一个积分进行评估,并获得3D Green函数作为2D结果在方位角上的叠加。开发出来的用于评估格林函数的算法避免了对相同数量的重复计算,并且利用了MATLAB环境中的矢量化处理。该算法对材料属性,源和观测点的频率和位置没有任何限制。对位移和应力进行了数值结果的广泛测试。测试证实了数值结果的准确性。版权所有(c)2006 John Wiley&Sons,Ltd.

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