首页> 外文会议>ASME Pacific Rim technical conference and exhibition on packaging and integration of electronic and photonic systems, MEMS and NEMS >COOLING PERFORMANCE COMPARISONS OF FIVE DIFFERENT PLATE-PIN COMPOUND HEAT SINKS BASED ON TWO DIFFERENT LENGTH SCALE
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COOLING PERFORMANCE COMPARISONS OF FIVE DIFFERENT PLATE-PIN COMPOUND HEAT SINKS BASED ON TWO DIFFERENT LENGTH SCALE

机译:基于两种不同长度尺度的五种不同板销复合散热器的冷却性能比较

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摘要

Plate fin heat sinks (PFHS) are widely used to remove heat from the microelectronic devices. In the present study, a new type of compound heat sink, named as plate-pin fin heat sink (PPFHS), is employed to improve the air cooling performance. With CFD numerical method, PPFHSs with five forms of pin cross-section profiles (square, circular, elliptic, NACA 0050, and dropform) and PFHS were simulated. Two different length scales were adopted to evaluate the performance of six types of heat sinks, including PFHS. One of the length scales is commonly used by many investigators, which is two times of the channel spacing. The other length scale is suggested by volume averaging theory (VAT), which is four times of average porosity divided by specific interface. The influence of pin fin cross-section profile on the flow and heat transfer characteristics was presented by means of Nusselt number, pressure drop and overall efficiency. It is found that the Nu number of a PPFHS is at least 35% higher than that of a PFHS used to construct the PPFHS at the same Reynolds number no matter which length scale was used. It is also revealed that the heat transfer enhancement of square PPFHS is offset by its excessively high pressure drop, which makes it not as efficient as the other types of PPFHS. Circular PPFHS performs similar to the streamline shaped PPFHS when the Reynolds number is not too high. However, with the increase in Re the advantage of the circular cross-section diminishes. Using the streamline shaped pins, not only the pressure drop of the compound heat sinks could be decreased considerably, the heat transfer enhancement also makes a step forward. However, evaluating the performance of heat sinks by using the commonly used length scale, the benefit of streamline shaped types of PPFHSs is a little bit overstated. The VAT suggested length scale is more reasonable to do the performance comparison of different heat sinks, especially when it is difficult to provide a fair and physically meaningful basis for the comparison. In short, the present numerical simulation provides original information of the influence of different pin-fin cross-section profiles on the thermal and hydraulic performance of the new type compound heat sink and emphasizes the importance of choosing a proper length scale when evaluating heat transfer enhancement, which is helpful in the design of heat sinks.
机译:板翅片散热器(PFHS)广泛用于去除微电子器件的热量。在本研究中,采用一种新型的复合散热器,作为板销翅片散热器(PPFHS),以改善空气冷却性能。利用CFD数值方法,模拟了具有五种形式的PIN横截面曲线(方形,圆形,椭圆形,NACA 0050和液滴)和PFH的PPFHSS。采用两种不同的长度尺度来评估六种类型的散热器的性能,包括PFHS。许多调查员通常使用其中一个长度尺度,这是通道间距的两倍。体积平均理论(VAT)提出了另一个长度尺度,这是由特定界面除以平均孔隙度的四次。销鳍横截面轮廓对流动和传热特性的影响是通过露起的数量,压降和整体效率提出的。结果发现,无论使用哪个长度尺度,PPFH的NU数量比用于在相同的雷诺数的PPFH上构建PPFHs的PPFH的数量至少为35%。还揭示了方形PPFHS的热传递增强通过其过高的压降抵消,这使得它不如其他类型的PPFH一样高效。当雷诺数不太高时,圆形PPFHs执行与流线形PPFH类似。然而,随着RE的增加,圆形横截面的优点在于。使用流线形销,不仅可以大大降低化合物散热器的压降,传热增强也逐步前进。然而,通过使用常用的长度尺度来评估散热器的性能,流线形类型的PPFHS的益处有点夸大。增值税建议的长度尺度更合理,以做不同散热器的性能比较,特别是当难以为比较提供公平和物理有意义的基础时。简而言之,本数值模拟提供了不同销鳍横截面型材对新型复合散热器的热和水力性能的影响的原始信息,并强调在评估传热增强时选择适当长度尺度的重要性,这有助于设计散热器。

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