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Heat Conduction in Multiply Adjoined Anisotropic Media with Embedded Point Heat Sources

机译:嵌入点热源的多重邻接各向异性介质中的热传导

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In this article the direct domain-mapping technique is applied in the boundary element method (BEM) to investigate the heat conduction in composites consisting of multiple anisotropic media with embedded point heat sources. By use of a linear coordinate transformation, the physical domain is mapped to an auxiliary plane for 2D or space for 3D, where the heat conduction is considered isotropic. However, the interfaces of adjoined materials with dissimilar properties will overlap or separate in the mapped plane or space. For the use of the subregioning technique in BEM to solve such problems, the thermal equilibrium condition for interfaces is developed to account for boundary distortions. In the mapped plane or space, not only the locations but also the strength of heat sources are transformed accordingly. After the problem is solved in the mapped plane or space, the obtained numerical solution is thereafter interpolated and transformed back to the one in the physical domain.
机译:本文将直接域映射技术应用到边界元方法(BEM)中,以研究由多种各向异性介质与嵌入式点热源组成的复合材料的热传导。通过使用线性坐标变换,可以将物理域映射到2D辅助平面或3D空间,其中热传导被视为各向同性。但是,具有不同特性的相邻材料的界面将在映射的平面或空间中重叠或分离。为了在BEM中使用分区技术解决此类问题,开发了界面的热平衡条件以解决边界变形问题。在映射的平面或空间中,不仅位置发生变化,而且热源的强度也会发生相应的变化。在映射的平面或空间中解决问题后,随后对获得的数值解进行插值并将其转换回物理域中的一个。

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