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Experimental and Numerical Study Upon Uniformity of Impingement Cooling With Pin-Fin Heat Sink

机译:用尖翅散热器均匀凝固性的实验性和数值研究

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摘要

In this paper, the impingement cooling performance on pin-fin heat sinks is experimentally and numerically investigated with different outlet arrangements and pin-fin layouts. Compared with one-way opening arrangement, results show that the two-way opening arrangement can offer a much lower pressure loss (Delta p) due to shorter flow distance of airflow from outer jets. Meanwhile, it is surprising that the two-way opening arrangement still offers appreciable improvements on effective heat transfer coefficient (h(eff)). This is because the fountain may shift toward the outer jets more rapidly with one-way opening arrangement. Yet the implementation of staggered pin-fin layout has minor improvement on h(eff) . However, Delta p can be obviously reduced by 11.1% due to the more effective spreading of impinging airflow in radial direction. The h(eff) value can be further increased by 8.8% when a smaller jet-to-target distance is applied. With priority consideration of hot spots in electronic cooling, the nonuniformity of local Nusselt number (S) is further studied through the computational fluid dynamics (CFD) method. S approaches 18.5% when the airflow directly impinges on a flat surface with optimized jet array. Implementing pin-fin heat sinks can reduce the nonuniformity of Nusselt number distribution to fall below 8.0%. The nonuniformity of local Nusselt number can be further reduced to 1.8% by applying four-way opening arrangement and larger central jet at the same time.
机译:在本文中,用不同的出口布置和销翅片布局实验和数值研究了销翅片散热器上的冲击冷却性能。与单向开度布置相比,结果表明,由于来自外喷射的气流的流量距离较短,双向开启装置可以提供更低的压力损失(DELTA P)。同时,令人惊讶的是,双向开启安排仍然对有效的传热系数(H(EFF))提供了意识的改进。这是因为喷泉可以以单向开口布置更快地向外喷射移动。然而,交错别针布局的实施对H(EFF)的改进略有改善。然而,由于在径向方向上撞击气流的更有效地扩散,Delta P可以显然减少11.1%。当施加较小的喷射目标距离时,H(EFF)值可以进一步增加8.8%。通过优先考虑电子冷却中的热点,通过计算流体动力学(CFD)方法进一步研究局部营养数的不均匀性。当气流直接撞击平坦表面时,S接近18.5%。实施销翅片散热器可以降低营养数分布的不均匀性,低于8.0%。通过在同一时间施加四通开口布置和较大的中央射流,可以进一步降低局部喷射数的不均匀性。

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