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Analysis of an Impinging Two-Dimensional Jet

机译:撞击二维射流的分析

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Heat transfer in jet impingement is a complicated phenomenon and a general analytical solution is not available. Typical jet impingement studies are conducted experimentally and best-fit correlations are proposed (Beitelmal, Saad, and Patel [2]; Beitelmal [3]; Beitelmal, Saad, and Patel [4]; Schauer and Eustis [7]; McMurray, Myers, and Uyehara [8], Gardon and Akfirat [9]). Separate solutions for the stagnation region and the wall jet region are then combined to determine the overall heat transfer solution for the impinging jet. In this paper, stagnation and wall jet region solutions for a two-dimensional jet normally impinging on a flat surface are developed using heat transfer relations available in the literature. These solutions are analyzed and compared to previous experimental results (Beitelmal, Saad, and Patel [2]; Beitelmal [3]). The potential flow assumption is used for the fluid dynamics analysis at the stagnation region. For the wall jet region, a comparison was achieved through consideration of the classical analytical solution for parallel flow over a flat plate. Analytical solutions as well as semiempirical solutions for the stagnation region and the wall jet reported by previous investigators were also considered. Predictions for heat transfer in the stagnation region using potential flow assumptions were found to be accurate to within 20%. For the wall jet region, previous correlations predicted by McMurray, Myers, and Uyehara [8] and Nizou [10] were found to be the most accurate. At large values of x/D, the heat transfer properties in the wall jet are shown to be very similar to those of a turbulent boundary layer over a flat plate. Such a simplified analysis in different regions of an impinging jet using some basic fluid dynamics assumptions can greatly facilitate a prediction of the local Nusselt number
机译:射流撞击中的热传递是一个复杂的现象,并且没有通用的分析解决方案。典型的射流撞击研究是通过实验进行的,并提出了最佳拟合相关性(Beitelmal,Saad和Patel [2]; Beitelmal [3]; Beitelmal,Saad和Patel [4]; Schauer和Eustis [7]; McMurray,Myers ,以及Uyehara [8],Gardon和Akfirat [9])。然后将停滞区域和壁射流区域的单独解决方案合并,以确定撞击射流的整体传热解决方案。在本文中,利用文献中已有的传热关系,开发了通常撞击在平面上的二维射流的停滞和壁射流区域解。分析了这些解决方案并将其与先前的实验结果进行了比较(Beitelmal,Saad和Patel [2]; Beitelmal [3])。潜在流量假设用于停滞区域的流体动力学分析。对于壁射流区域,通过考虑平板上平行流的经典分析解决方案进行了比较。还考虑了先前研究者报告的停滞区域和壁射流的解析解以及半经验解。发现使用潜在流量假设对停滞区域中的热传递进行的预测精确到20%以内。对于壁射流区域,发现麦克默里,迈尔斯,乌耶哈拉[8]和尼祖[10]预测的先前相关性最准确。在较大的x / D值下,壁式射流中的传热特性与平板上湍流边界层的传热特性非常相似。使用一些基本的流体动力学假设对撞击射流的不同区域进行的这种简化分析可以极大地促进对局部努塞尔数的预测

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