首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Influence of spanwise pitch on local heat transfer distribution for in-line arrays of circular jets with spent air flow in two opposite directions
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Influence of spanwise pitch on local heat transfer distribution for in-line arrays of circular jets with spent air flow in two opposite directions

机译:翼展方向间距对带有两个相反方向的废空气流的圆形射流直列排列的局部传热分布的影响

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摘要

Effect of spanwise jet-to-jet spacing on local heat transfer distribution due to an in-line rectangular array of confined multiple circular air jets impinging on a surface parallel to the jet plate are studied experimentally. Length-to-diameter ratio of nozzles of the jet plate is 1.0. The flow. after impingement, is constrained to exit in two opposite directions from the confined passage formed betweenjet plate and target plate. Mean jet Reynolds numbers based on the nozzle exit diameter (d) covered are 3000, 5000, 7500 and 10,000 and jet-to-plate spacings studied are d, 2d and 3d. Spanwise pitches considered are 2d, 4d and 6d in steps of 2d keeping the streamwise pitch at 5d. For all the configurations, the jet-plates have ten spanwise rows in streamwise direction and six jets in each spanwise row. Flat heat transfer surface is made of thin stainless steel metal foil. Local temperature distribution on a target plate is measured using thermal infrared camera. Wall static pressure on the target plate is measured in the streamwise direction to estimate crossflow velocities and individual jet velocities. Heat transfer characteristics are explained on the basis of the flow distribution. A simple correlation to predict streamwise distribution of heat transfer coefficients averaged over each spanwise strip resolved to one jet hole is developed. (C) 2008 Elsevier Inc. All rights reserved.
机译:实验研究了翼展方向的喷射间距对局部传热分布的影响,这是由于一列矩形矩形阵列限制了多个平行于喷射板表面的圆形圆形空气喷射。喷射板的喷嘴的长径比为1.0。流。撞击后,被约束在两个相反的方向上从形成在喷射板和靶板之间的密闭通道中离开。基于所覆盖的喷嘴出口直径(d)的平均雷诺数为3000、5000、7500和10,000,所研究的射流板间距为d,2d和3d。考虑的跨距螺距为2d,4d和6d,以2d为步长,使流向螺距保持在5d。对于所有配置,喷射板在流向具有十个翼展方向行,在每个翼展方向行中具有六个喷射器。平坦的传热表面由薄的不锈钢金属箔制成。使用红外热像仪测量目标板上的局部温度分布。沿流向测量目标板上的壁静压,以估计横流速度和各个射流速度。传热特性根据流量分布进行说明。建立了一种简单的相关性,以预测在解析为一个喷孔的每个展向带上平均的传热系数的流向分布。 (C)2008 Elsevier Inc.保留所有权利。

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