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首页> 外文期刊>International Journal of Thermal Sciences >Parametric study on the combined thermal and hydraulic performance of single phase micro pin-fin heat sinks. part I: Square and circle geometries
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Parametric study on the combined thermal and hydraulic performance of single phase micro pin-fin heat sinks. part I: Square and circle geometries

机译:单相微型针翅式散热器热和水力性能组合的参数研究。第一部分:正方形和圆形几何

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摘要

This paper is the first part of a three paper series studying the overall performance of a micro pin-fin heat sink with single phase liquid flow and different pin-fin geometries operating under and similar conditions. Two different heat sinks, one with square shaped pin-fins and the other with circular pin-fins are selected for study in this paper. The paper focuses on studying the effect of thermal resistance and pressure drop of micro heat sinks when subjected to various factors such as pitch distance in axial and transverse directions, aspect ratio of the pin-fin, hydraulic diameters of the pin-fin, and the liquid flow rate through the device. A figure of merit (FOM) involving both the thermal resistance and pressure drop across the heat sink is introduced in the paper and the performance is evaluated on the basis of this FOM. The heat sinks are subjected to uniform heat flux at the bottom of the heat sink and the characteristic study is based on constant Reynolds number of liquid flow at the entrance of the channel. Water is used as the fluid in this study. The study is conducted over the Reynolds number range of 50-500. The characteristic study is carried out with the help of simulations developed using commercially available computational fluid dynamics software CoventorWare. The characteristic study carried out in this paper is divided into four cases. In the first case the axial pitch distance is varied between 350 μm and 650 μm by keeping the aspect ratio of the pin-fin structure constant at 0.5. For the second case the transverse pitch distance is varied between 150 μm and 300 μm and the aspect ratio is kept the same as in the first case. Third case studies the effect of varying the aspect ratio (between 0.33 and 1) of the pin-fin structures by keeping both pitches constant. Case four studies the variation in the performance of the heat sink with the change in the hydraulic diameter of the pin-fins. The study conducted in this paper reveals the importance of considering the pressure drop along with the thermal resistance in evaluating the overall performance of the micro pin-fin heat sink. At low Reynolds number (below 300) the heat sinks with circular pin-fins shows better performance compared with heat sinks with square pin-fins and vice versa at high Reynolds number (above 300). FOM varies considerably with the change in the parameters like axial pitch distance, transverse pitch distance, aspect ratio and hydraulic diameter of the pin-fins.
机译:本文是三篇系列文章的第一部分,该系列文章研究了在相同条件下运行的具有单相液体流动和不同针翅几何形状的微型针翅式散热器的整体性能。本文选择了两个不同的散热器,一个带有方形的针形散热片,另一个带有圆形的针形散热片。本文主要研究微型散热器的热阻和压降在受到各种因素影响时的影响,例如轴向和横向的螺距距离,针鳍的纵横比,针鳍的水力直径以及通过设备的液体流速。本文介绍了同时涉及热阻和散热器压降的品质因数(FOM),并基于此FOM评估了性能。散热片在散热片的底部受到均匀的热通量,其特性研究基于通道入口处恒定的雷诺数。在这项研究中,水被用作流体。该研究是在雷诺数为50-500的范围内进行的。该特性研究是借助使用商用计算流体动力学软件CoventorWare开发的仿真进行的。本文进行的特性研究分为四个案例。在第一种情况下,通过将针鳍结构的纵横比保持恒定为0.5,可以使轴向节距在350μm和650μm之间变化。对于第二种情况,横向节距距离在150μm和300μm之间变化,并且纵横比保持与第一种情况相同。第三案例研究了通过保持两个间距不变来改变针鳍结构的纵横比(在0.33和1之间)的效果。案例四研究了散热片性能随针翅液压直径的变化而变化的情况。本文进行的研究表明,在评估微针翅片散热器的整体性能时,考虑压降以及热阻的重要性。在低雷诺数(低于300)下,具有圆形针状鳍片的散热器与具有方形针状鳍片的散热器相比表现出更好的性能,反之亦然,在高雷诺数下(高于300)。 FOM随轴向变化的间距(如轴向节距,横向节距,长宽比和针翅的水力直径)而变化很大。

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