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Geometric optimization of T-Y-shaped cavity according to Constructal design

机译:根据结构设计对T形孔进行几何优化

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This paper applies Constructal design to optimize the geometry of a T-Y-shaped cavity that penetrates into a solid conducting wall. The objective is to minimize the global thermal resistance between the solid and the cavity. There is uniform heat generation on the solid wall. The total volume and the cavity volume are fixed, but the geometric lengths of the T-Y-shaped cavity can vary. The shape of T-Y cavity is optimal under the following conditions: it penetrates the conducting wall almost completely, the shape of the area of the solid inserted into the cavity is long enough to cross completely the T-Y-shaped cavity (ending at the coordinate y = 0), and this area is 14% of the total area occupied by the body and the T-Y-shaped cavity. The results also show that the optimal T-Y-shaped cavity performs approximately 108% better when compared with an optimal C-shaped cavity.
机译:本文应用结构设计来优化T形腔体的几何结构,该腔体可以穿透固体导电壁。目的是最小化固体和腔之间的整体热阻。固体壁上均匀地产生热量。总体积和腔体体积是固定的,但T形Y形腔体的几何长度可以变化。 TY腔的形状在以下条件下是最佳的:它几乎完全穿透导电壁,插入腔中的固体区域的形状足够长,可以完全穿过TY形腔(在坐标y =处结束)。 0),并且该区域是主体和TY形腔所占总面积的14%。结果还表明,与最佳C形腔相比,最佳T-Y形腔的性能大约好108%。

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