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Flow and heat transfer characteristics of transverse perforated ribs under impingement jets

机译:冲击射流下横向多孔肋的流动和传热特性

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摘要

An experimental study was conducted to investigate heat transfer and flow characteristics under impingement of a multiple circular jet array with perforated rib surfaces (PRS) and solid rib surfaces (SRS). Heat transfer results were obtained using an infrared thermal imaging technique. Velocity measurements were made with a Laser-Doppler Anemometry (LDA) system. The heat transfer results of the rib surfaces are compared with those of a smooth plate. Best heat transfer performance was obtained with the PRS arrangements. The presence of rib perforation produces higher heat transfer coefficients than the smooth plate and SRS surfaces. Correlations have been developed for the average Nusselt number for the perforated rib surfaces based on projected and total area. The velocity measurements were obtained for the case where the jet-to-plate distances at H/d equal to 2, 4, 8 and at a Reynolds number of 10,000. Positions of maximum radial and axial velocities and Reynolds stress distributions have been determined for PRS, SRS and smooth plates. For some locations, the production of turbulence kinetic energy and radial velocities are higher for the PRS surfaces as compared to SRS and smooth surfaces.
机译:进行了一项实验研究,以研究具有多孔肋表面(PRS)和固体肋表面(SRS)的多重圆形射流阵列撞击下的传热和流动特性。使用红外热成像技术获得传热结果。速度测量是通过激光多普勒风速仪(LDA)系统进行的。将肋表面的传热结果与光滑板的传热结果进行比较。使用PRS装置可获得最佳的传热性能。肋孔的存在会产生比光滑板和SRS表面更高的传热系数。已经开发了基于投影面积和总面积的穿孔肋骨表面平均努塞尔数的相关性。对于在H / d处的射流到板的距离等于2、4、8和雷诺数为10,000的情况,获得了速度测量值。对于PRS,SRS和光滑板,已经确定了最大径向和轴向速度的位置以及雷诺应力分布。在某些位置,与SRS和光滑表面相比,PRS表面产生的湍动能和径向速度更高。

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