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The influence of packing dimension on the effective thermal properties of doubly-periodic composites by using super hybrid finite body elements

机译:用超级混合有限体元件将填料尺寸对双周期复合材料有效热性能的影响

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A super polygonal hybrid element is developed for investigating the effects of the packing dimension on effective thermal conductivities of composites containing a doubly periodic array of circular inclusions. In the analysis, a rectangular representative volume element (RVE) is employed to represent the packing dimension of the periodic microstructure and then is solved using a super hybrid finite element in which the fundamental solutions are taken as internal interpolation functions. The fundamental solutions used to satisfy both the heat transfer governing equation and the interfacial continuity between the inclusion and the surrounding matrix. The use of fundamental solutions makes the functional of stiffness matrix including boundary integrals only. As a result, significant efforts on mesh generation can be saved, and mesh reduction as well as high solution accuracy can be achieved. Finally, numerical examples are considered to investigate the. role of the packing dimension of the RVE.
机译:开发了一种超高多边形混合元件,用于研究填料尺寸对含有双周期夹杂物阵列的复合材料的有效热导体的影响。在分析中,采用矩形代表性体积元件(RVE)来表示周期性微观结构的填充尺寸,然后使用超级混合有限元求解,其中基本解决方案被作为内部插值功能。用于满足传热控制方程的基本解决方案和夹杂物和周围基质之间的界面连续性。基本解决方案的使用使得刚度矩阵的功能仅包括边界积分。结果,可以保存网格生成的重大努力,并且可以实现网格缩小以及高溶液精度。最后,认为数值例子被认为调查。持续性填料维度的作用。

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