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Numerical study of the heat sink with un-uniform fin width designs

机译:翅片宽度不均匀设计的散热器的数值研究

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The thermal performances of the heat sink with un-uniform fin width designs with an impingement cooling were investigated numerically. The governing equations are discretized by using a control-volume-based finite-difference method with a power-law scheme on an orthogonal non-uniform staggered grid. The coupling of the velocity and the pressure terms of momentum equations are solved by the SIMPLEC algorithm. The well-known k - ε two-equations turbulence model is employed to describe the turbulent structure and behavior. The parameters include the five Reynolds number (Re = 5000-25000), three fin heights (H = 35, 40, 45 mm), and five fin width designs (Type-1-Type-5). The objective of this study is to examine the effects of the fin shape of the heat sink on the thermal performance. The results show that the Nusselt number increases with the Reynolds number. The increment of the Nusselt number decreases gradually with the increasing Reynolds number. Furthermore, the effects of fin dimensions on the Nusselt number at high Reynolds numbers are more significant than that at low Reynolds numbers. It is also found that there is potential for optimizing the un-uniform fin width design.
机译:数值研究了翅片宽度不均匀设计并带有冲击冷却的散热器的热性能。通过在正交非均匀交错网格上使用带有幂律方案的基于控制量的有限差分方法离散控制方程。动量方程的速度项和压力项的耦合通过SIMPLEC算法求解。采用众所周知的k-ε二方程湍流模型来描述湍流的结构和行为。参数包括五个雷诺数(Re = 5000-25000),三个翅片高度(H = 35、40、45 mm)和五个翅片宽度设计(Type-1-Type-5)。这项研究的目的是研究散热片的散热片形状对热性能的影响。结果表明,努塞尔数随雷诺数的增加而增加。随着雷诺数的增加,努塞尔数的增量逐渐减小。此外,在高雷诺数时,鳍片尺寸对Nusselt数的影响比在低雷诺数时的影响更大。还发现存在优化不均匀鳍宽设计的潜力。

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