Performance Analysis of Central Processing Unit Heat Sinks Fitted With Perforation Technique and Splitter Inserts

被引:7
作者
Bencherif, Brahim [1 ]
Sahel, Djamel [2 ]
Benzeguir, Redouane [1 ]
Ameur, Houari [3 ]
机构
[1] Univ Sci & Technol Oran, Fac Genie Mecan, Lab Carburants Gazeux & Environm LCGE, USTO MB, Oran 31000, Algeria
[2] Univ Amar Telidji Laghouat, Dept Sci Tech, Laghouat 03000, Algeria
[3] Ctr Univ Naama Salhi Ahmed, Dept Technol, BP 66, Naama 45000, Algeria
来源
ASME JOURNAL OF HEAT AND MASS TRANSFER | 2023年 / 145卷 / 01期
关键词
VALIDATED ANALYTICAL EXPRESSIONS; THERMAL PERFORMANCE; TRANSFER ENHANCEMENT; NUMERICAL-ANALYSIS; FORCED-CONVECTION; PRESSURE-DROP; HYDRAULIC PERFORMANCE; RECTANGULAR CHANNEL; ELECTRONICS DEVICES; VORTEX GENERATORS;
D O I
10.1115/1.4055815
中图分类号
O414.1 [热力学];
学科分类号
摘要
The increase in the heat dissipation rate in heat sinks (HSs), the reduction of the occupied volume and mass, and the elimination of the lower heat transfer areas (LHTAs) behind the pins are the main parameters to be controlled in HSs design. For this purpose, this study is devoted to numerically investigating the effect of the combination between perforation technique and splitters inserts on the heat dissipation and turbulent fluid flow characteristics of pin fins heat sinks (PFHSs). The splitter is located in the back of the pin, and the cylindrical pin fins heat sinks (CPFHSs) are perforated with different pairs of hole numbers. These configurations are named PFHS-0 (without perforation) to PFHS-5. The results obtained for the PFHS-5 show an increase in Nusselt number by 34.91% and a reduction in the thermal resistance by 24.22%, compared with CPFHSs. For the same conditions, the occupied volume and mass of this case are also reduced by 70% and 47.5%, respectively. In addition, the PFHS-5 case ensures the highest hydrothermal performance factor (HTPF) of 1.42 at Re = 8,740.
引用
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页数:12
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