首页> 外文期刊>Journal of thermal stresses >BOUNDARY ELEMENT METHOD INTERIOR STRESS/ STRAIN ANALYSIS FOR TWO-DIMENSIONAL STATIC THERMOELASTICITY INVOLVING NONUNIFORM VOLUME HEAT SOURCES
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BOUNDARY ELEMENT METHOD INTERIOR STRESS/ STRAIN ANALYSIS FOR TWO-DIMENSIONAL STATIC THERMOELASTICITY INVOLVING NONUNIFORM VOLUME HEAT SOURCES

机译:含非均匀体积热源的二维静态热弹性的边界元方法内部应力/应变分析

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摘要

In the elastostatics analysis of the boundary element method, strains at interior points of an elastic body are calculated using the respective Somigliana identity after the boundary integral equation is solved for boundary displacements and tractions. In the pretence of a nonuniform volume heat source, an extra line integral depending on the spatial location of the source point will appear in the boundary integral equation for displacements. Therefore, the usual spatial differentiations of the, boundary integral equation for displacements will not yield proper strains if the source point is inside the domain. Somigliana's identity is derived for the interior strains in an anisotropic medium loaded with a nonuniform volume heat source. By coupling the associated thermal field with elasticity, this work provides an alternative and effective numerical approach of analyzing the interior thermal stresses in a fully anisotropic medium loaded with arbitrary nonuniform volume heat sources.
机译:在边界元法的弹力分析中,在求解边界积分方程的边界位移和牵引力之后,使用各自的Somigliana身份计算弹性体内部点的应变。在假装体积不均匀的热源的情况下,取决于源点空间位置的额外线积分将出现在位移的边界积分方程中。因此,如果源点在域内,则位移边界积分方程的常规空间微分将不会产生适当的应变。 Somigliana的身份是由负载有不均匀体积热源的各向异性介质中的内部应变得出的。通过将相关的热场与弹性耦合,这项工作提供了一种替代的有效数值方法,用于分析负载有任意不均匀体积热源的完全各向异性介质中的内部热应力。

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