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A NUMERICAL STUDY OF HEAT TRANSFER AND FLOW STRUCTURE IN CHANNELS WITH MINIATURE V RIB-DIMPLE HYBRID STRUCTURE ON ONE WALL

机译:微型V肋-双壁混合结构通道内传热和流动结构的数值研究

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This paper presents a numerical study on turbulent flow and heat transfer in the channels with a novel hybrid cooling structure with miniature V-shaped ribs and dimples on one wall. The heat transfer characteristics, pressure loss and turbulent flow structures in the channels with the rib-dimples with three different rib heights of 0.6 mm, 1.0 mm and 1.5 mm are obtained for the Reynolds numbers ranging from 18,700 to 60,000 by numerical simulations, which are also compared with counterpart of a pure dimpled and pure V ribbed channel. The results show that the overall Nusselt numbers of the V rib-dimple channel with the rib height of 1.5 mm is up to 70% higher than that of the channels with pure dimples. The numerical simulations show that the arrangement of the miniature V rib upstream each dimple induces complex secondary flow near the wall and generates downwashing vortices, which intensifies the flow mixing and turbulent kinetic energy in the dimple, resulting in significant improvement in heat transfer enhancement and uniformness.
机译:本文利用一种新型的混合冷却结构,在壁上具有微型V形肋和凹痕,对通道内的湍流和传热进行了数值研究。对于雷诺数范围为18,700至60,000的雷诺数,通过数值模拟获得了具有三种不同的肋高的肋-凹窝的通道中的传热特性,压力损失和湍流结构,其数值分别为18,700至60,000。还与纯凹坑和纯V带肋通道的对应部分进行了比较。结果表明,肋骨高度为1.5 mm的V肋骨酒窝通道的总Nusselt值比纯肋骨酒窝通道的总Nusselt值高70%。数值模拟表明,在每个酒窝上游布置微型V型肋会在壁附近引起复杂的二次流动并产生下冲涡流,从而加剧酒窝中的流动混合和湍动能,从而显着改善了传热和均匀性。 。

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