具有周期边界条件的加热块状管道中的热对流逐单元处理

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-07-26 DOI:10.3390/inventions8040097
T. Jue, Horng-Wen Wu, Ying-Chien Hsueh, Zhi-Wei Guo
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引用次数: 0

摘要

由于电子设备中的多个热源,冷却通道中经常出现流式流动的周期性,因此需要创造一种有效的技术来改善热冷却对流。本工作通过预处理共轭梯度(PCG)求解器,在半隐式投影有限元法(FEM)中使用逐元(EBE)处理,探索了周期性边界条件下加热块管道中的热对流增强。使用时间平均努塞尔数增强、摩擦系数增强和热性能系数研究了在周期性边界条件下,雷诺数(100、175和250)对安装在通道中的矩形圆柱体的影响。结果表明,安装在上游块体上方的矩形圆柱体由于改变了无圆柱体的流量,促进了加热块体管道中的热对流。然而,增加矩形圆柱体的数量会增加摩擦系数的增强。结果,对于周期性边界条件,每两个块上方有一个矩形圆柱体的情况具有最佳的热性能系数。
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Thermal Convection in a Heated-Block Duct with Periodic Boundary Conditions by Element-by-Element Treatment
The periodic nature of stream-wise flow occurs in a cooling channel so frequently due to the multiple heat sources in electronic equipment, demanding the creation of an effective technique to improve the heat-cooling convection. This work explores thermal convection enhancement in a heated-block duct for periodic boundary conditions using the element-by-element (EBE) treatment in a semi-implicit projection finite element method (FEM) through a preconditioned conjugate gradient (PCG) solver. The effects of changing the Reynolds numbers (100, 175, and 250) on rectangular cylinders installed in the channel under periodic boundary conditions were studied using time-mean Nusselt number enhancement, friction factor enhancement, and thermal performance coefficient. The results show that the rectangular cylinders installed stream-wise above an upstream block promote thermal convection in the heated-block duct due to modifying the flow of no cylinders. However, increasing the number of rectangular cylinders increases the friction factor enhancement. As a result, the case for periodic boundary conditions with a rectangular cylinder above every two blocks has the best thermal performance coefficient.
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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