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首页> 外文期刊>International Journal of Thermal Sciences >Heat transfer in rectangular channels with porous wire mesh under impinging jet conditions
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Heat transfer in rectangular channels with porous wire mesh under impinging jet conditions

机译:在撞击式喷射条件下具有多孔丝网的矩形通道中的热传递

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Detailed heat transfer distribution in a rectangular channel under an array of impinging air jets was experimentally investigated using transient liquid crystal technique. The jet-to-jet spacing was 4 and the jet-to-surface spacing Was 3. The rectangular channel was fully or partially filled with porous wire meshes (filling ratios = 100%, 50% and 25%) and the jet Reynolds numbers ranged from 2500 to 7700. Although the literature data indicated that the porous material enhanced the overall heat transfer rate, the regional heat transfer on the target surface was degraded because of the blockage and breakup of the core jet flow. The heat transfer coefficient was further reduced with an increase in the filling ratio. For the partially filled channel, the porous wire mesh located near the target surface contributed to even lower heat transfer. All the cases demonstrated that the porous material decreased regional heat transfer on the target surface, and the average Nusselt number for the fully filled case was only 50% of the unfilled case. Although the impingement heat transfer was hindered, the reduced variation in Nusselt number could prevent the development of local hot or cold spots in engineering applications. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:通过瞬态液晶技术实验研究了撞击空气喷射阵列下的矩形通道中的详细传热分布。喷射间距为4,射流到表面间距为3.矩形通道完全或部分地填充多孔线网格(填充率= 100%,50%和25%)和喷射雷诺数虽然文献数据表明,多孔材料增强了整体传热速率,但由于芯射流的堵塞和破坏,目标表面上的区域热传递降低。随着填充率的增加,传热系数进一步降低。对于部分填充的通道,位于目标表面附近的多孔线网有助于甚至更低的传热。所有病例均证明,多孔材料降低了目标表面上的区域传热,完全填充案例的平均营养号仅为未填补案例的50%。虽然冲击热传递受到阻碍,但营养数量的变化降低可以防止工程应用中的局部热或冷点的发展。 (c)2017年Elsevier Masson SAS。版权所有。

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