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LCT AND PIV INVESTIGATIONS BEHIND TRAPEZOIDAL-RIB WITH A SLIT MOUNTED ON BOTTOM WALL OF A RECTANGULAR DUCT

机译:LCT和PIV调查梯形 - 肋骨背后的调查,狭缝安装在矩形管道的底壁上

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Various rib turbulator geometries have been used earlier to investigate the heat transfer and fluid flow characteristics owing to its vast industrial applications. Permeable ribs are reported to provide better performance in terms of heat transfer enhancement and pressure penalty. The trapezoidal rib with variable downstream chamfering and a centrally placed longitudinal slit has been used for the detailed flow field and heat transfer investigations using particle image velocimetry and liquid crystal thermography. Objective of the present work is to study the combined effect of rib chamfering along with a continuous slit and establish an understanding of the underlying flow mechanism and the corresponding heat transfer distribution. Experiments were carried out for hydraulic diameter based Reynolds numbers of 61480 in a rectangular duct for flow over rib with 12.5% blockage ratio and 25% open area ratio. The chamfer angles were varied from 0 to 20 degree. It has been observed that the slitted rib cause shorter reattachment length and reduced pressure penalty as compared to its solid counterpart.
机译:由于其庞大的工业应用,之前使用了各种罗纹湍流器几何形状的几何形状,以研究传热和流体流动特性。据报道,透水肋是在传热增强和压力损失方面提供更好的性能。具有可变下游倒角的梯形肋和中心放置的纵向狭缝已经用于使用粒子图像速度和液晶热成像的详细流场和传热研究。本作研究的目的是研究肋骨倒角以及连续狭缝的组合效果,并建立对底层流动机制和相应的传热分布的理解。在矩形管道中为液压直径的雷诺数进行实验,在矩形管道中以12.5%的阻塞比和25%开口面积比流过肋。倒角角度从0度变化到20度。已经观察到,与其固体对应物相比,狭缝肋引起更短的重新附点长度和减压降低。

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