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A tapered inlet/outlet flow manifold for planar, air-cooled oblique-finned heat sink

机译:用于平面的锥形入口/出口流动歧管,空气冷却倾斜散热器

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摘要

Flow maldistribution compromises thermal and hydraulic performances of heat sinks. The oblique-finned heat sink is a multichannel heat sink comprising parallel (primary) and collinear oblique (secondary) channels and it was reported to suffer from a self-induced flow migration in liquid and air cooling. In this study, a novel tapered inlet/outlet flow manifold was proposed for the planar oblique-finned heat sink. Two heat sink configurations (oblique angles of 30 degrees and 45 degrees) and three flow manifold configurations (of 5%, 10%, and 20% wider flow domains) were investigated. Flow migration characteristics were studied via numerical simulations. Wind tunnel measurements, supported by infrared thermography, were performed to characterize thermal and hydraulic performances on a wide range of air flow rates. The flow manifold was observed to provide a favorable distribution of secondary flows in the spanwise direction of the heat sink. Up to 50% increase in Nusselt number with a negligible increase in pressure drop was observed with the 45 degrees oblique-finned heat sink once the flow manifold was incorporated. 30 degrees oblique angle -10% flow manifold combination provided the lowest heat sink temperature and the most uniform wall temperature. The novel tapered inlet/outlet flow manifold is the first effort reported in the literature to reduce the adverse effects of flow migration through the planar oblique-finned heat sinks.
机译:流量恶性分布损害了散热器的热和液压性能。倾斜翅片的散热器是包括平行(初级)和共线倾斜(二次)通道的多通道散热器,并且据报道,液体和空气冷却中的自诱导流动迁移。在该研究中,提出了一种用于平面倾斜翅片的散热器的新型锥形入口/出口流动歧管。研究了两个散热器配置(倾斜角度为30度,45度)和三个流动歧管配置(5%,10%和20%更宽的流动域)。通过数值模拟研究了流动迁移特性。通过红外热成像支撑的风洞测量,进行了在广泛的空气流速上表征热和液压性能。观察到流动歧管以提供散热器的南部方向上的二次流动的有利分布。在流动歧管掺入一旦流动歧管被掺入时,营养较大的漏斗数增加了50%的营养数字增加,并且在流动歧管中掺入了45度倾斜的散热器。 30度斜角-10%流动歧管组合提供最低的散热温度和最均匀的壁温。新颖的锥形入口/出口流动歧管是在文献中报道的第一次努力,以降低通过平面倾斜漏热水槽的流动迁移的不利影响。

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