首页> 外文OA文献 >Constructal optimisation of conjugate triangular cooling channels with internal heat generation
【2h】

Constructal optimisation of conjugate triangular cooling channels with internal heat generation

机译:共轭三角形冷却通道内部发热的结构优化

摘要

This paper presents the development of the three-dimensional flow architecture of conjugate cooling channels in forced convection with internal heat generation within a solid. Two types of cross-section channel geometries were used. The first involved equilateral triangles with three equal legs in length and all three internal angles of 60°. The second was isosceles right triangles with two legs of equal length and internal angles of 90°, 45° and 45°. Both the equilateral triangle and isosceles right triangle are special case of triangle that can easily and uniformly be packed and arranged to form a larger construct. The configurations were optimised in such a way that the peak temperature of the heat generating solid was minimised subject to the constraint of a fixed global volume of the solid material. The cooling fluid was driven through the channels by the pressure difference across the channel. The degrees of freedom of the channels were aspect ratio, hydraulic diameter and channel to channel spacing ratio. The shape of the channel was allowed to morph to determine the best configuration that gives the lowest thermal resistance. A gradient-based optimisation algorithm was applied in order to search for the best optimal geometric configurations that improve thermal performance by minimising thermal resistance for a wide range of dimensionless pressure difference. The effects of porosities, applied pressure and heat generation rate on the optimal aspect ratio and channel to channel spacing are reported. It was found that there are unique optimal design variables for a given pressure difference. The numerical results that were obtained were in agreement with the theoretical formulation using scale analysis and method of intersection of asymptotes. Results obtained show that the effects of applied dimensionless pressure drop on minimum thermal resistance were consistent with those obtained in the open literature.
机译:本文介绍了强制对流中固体内部产生热量的共轭冷却通道三维流动结构的发展。使用了两种类型的横截面通道几何形状。第一个涉及等边三角形,其三个边长相等,并且所有三个内角均为60°。第二个是等腰直角三角形,两条腿等长,内角为90°,45°和45°。等边三角形和等腰直角三角形都是三角形的特例,可以轻松,均匀地堆积和排列以形成更大的结构。以这样的方式优化配置,使得在固体材料的整体体积固定的约束下,使发热固体的峰值温度最小化。冷却流体通过通道上的压差被驱动通过通道。通道的自由度是纵横比,水力直径和通道与通道的间距比。允许通道的形状变形以确定提供最低热阻的最佳配置。应用了基于梯度的优化算法,以寻找最佳的最佳几何构型,该构型通过在各种无因次压差范围内将热阻降至最低来改善热性能。报告了孔隙率,施加的压力和生热速率对最佳纵横比和通道间距的影响。发现对于给定的压差,存在独特的最佳设计变量。得到的数值结果与使用比例尺分析和渐近线相交方法的理论公式一致。获得的结果表明,施加的无量纲压降对最小热阻的影响与公开文献中的结果一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号