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Local and area average Nusselt number correlation for a circular impinging jet over a flat plate

机译:平板上圆形撞击射流的局部和区域平均努塞尔数相关性

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Abstract Jet impingement technique is extensively used for cooling in various industrial applications. The present study deals with identifying the area affected by jet cooling and investigating the local and area average Nusselt number. Investigation of heat transfer is carried out on a 0.6 × 0.3 m2 flat plate impinged by a jet of air from a nozzle of 11.5 mm diameter. The area average and local heat transfer characteristics are studied over the target surface for Reynolds number 10,000–45,000, jet to plate spacing 3–20 d. The wall temperature distribution has been measured through non-intrusive infrared thermography technique. The work identifies the region of maximum heat transfer and its zone-wise distribution over the entire plate. The study investigates the impact of shape of imping area i.e., circular and square sections on heat transfer characteristics. A comparison is made between two sections having the same radial span and same area ratios. The experimental data are compared with the available local and average Nu correlations. Correlations are developed for local and area average Nu. The new correlations validate the local and area average Nu reasonably well from stagnation to maximum radial span, for the wide range of Reynolds number and jet plate spacing with less than ± 11 deviation.
机译:摘要 射流冲击技术广泛用于各种工业应用中的冷却。本研究涉及确定受射流冷却影响的区域,并调查局部和区域平均努塞尔数。传热研究是在0.6×0.3 m2平板上进行的,该平板受到直径为11.5 mm的喷嘴的空气射流的冲击。研究了雷诺数 10,000–45,000、射流到板间距 3–20 d 的目标表面上的面积平均和局部传热特性。壁温分布已通过非侵入式红外热成像技术测量。这项工作确定了最大传热区域及其在整个板块上的区域分布。本研究调查了撞击区域(即圆形和方形截面)的形状对传热特性的影响。对具有相同径向跨度和相同面积比的两个截面进行比较。将实验数据与现有的局部和平均Nu相关性进行比较。针对局部和区域平均 Nu 建立了相关性。新的相关性很好地验证了从停滞到最大径向跨度的局部和区域平均Nu,对于偏差小于11%的雷诺数和射流板间距±很宽。

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