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Mass/heat Transfer In Rotating, Smooth, High-aspect Ratio (4:1) Coolant Channels With Curved Walls

机译:旋转,光滑,高纵横比(4:1)弯曲壁冷却剂通道中的质量/热传递

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The paper presents an experimental study of heat /mass transfer coefficient in 4:1 aspect ratio smooth channels with nonuniform cross sections. Curved leading and trailing edges are studied for two curvatures of 9.06 m-1 (0.23 in.-1) and 15.11 m-1 (0.384 in.-1) and for two different curvature configurations. One configuration has curved walls with curvature corresponding to the blade profile (positive curvature on both leading and trailing walls) and the other configuration has leading and trailing walls that curve inward into the coolant passage (negative curvature on the leading surface and positive curvature on the trailing surface). A detailed study at Re=10,000 with rotation numbers in the range of 0-0.07 is undertaken for the two different curvature configurations. All experiments are done for a 90 deg passage orientation with respect to the plane of rotation. The experiments are conducted in a rotating two-pass coolant channel facility using the naphthalene sublimation technique. Only the radially outward flow is considered for the present study. The spanwise mass transfer distributions of fully developed regions of the channel walls are also presented. The mass transfer data from the curved wall channels are compared to those from a smooth 4:1 rectangular duct with similar flow parameters. The local mass transfer data are analyzed mainly for the fully developed region, and area-averaged results are presented to delineate the effect of the rotation number. Heat transfer enhancement especially in the leading wall is seen for the lower curvature channels, and there is a subsequent reduction in the higher curvature channel when compared to the 4:1 rectangular smooth channel. This indicates that an optimal channelrnwall curvature exists for which heat transfer is the highest.
机译:本文提出了具有不均匀横截面的长宽比为4:1的光滑通道中的传热/传质系数的实验研究。研究了9.06 m-1(0.23 in.-1)和15.11 m-1(0.384 in.-1)的两个曲率以及两个不同曲率配置的弯曲前缘和后缘。一种配置具有弯曲的壁,其曲率与叶片轮廓相对应(前壁和后壁均为正曲率),而另一种结构具有前壁和后壁,它们向内弯曲进入冷却液通道(前表面为负曲率,而冷却壁为正曲率)。拖曳表面)。对于两种不同的曲率配置,在Re = 10,000且旋转数在0-0.07范围内的情况下进行了详细研究。所有实验都是针对相对于旋转平面90度的通道方向进行的。实验是使用萘升华技术在旋转的两遍冷却液通道设施中进行的。本研究仅考虑径向向外流动。还显示了通道壁完全展开区域的翼展方向传质分布。将来自弯曲壁通道的传质数据与来自具有相似流量参数的光滑4:1矩形管道的传质数据进行比较。分析局部传质数据主要是针对完全发达的区域,并给出面积平均结果以描绘转数的影响。对于较低曲率的通道,尤其是在前壁中,传热得到了增强,与4:1矩形平滑通道相比,较高曲率的通道随后有所减少。这表明存在最佳的通道壁曲率,为此,传热是最高的。

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