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Influence of Secondary Flow Generated in a 90-deg Bend on the Thermal-Hydraulic Characteristics in a Mixing Tee

机译:90度弯曲产生的二次流对混合三通中热工-液压特性的影响

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This study aims at clarifying a relationship between nonisothermal fluid mixing in a T-junction area with a 90-deg bend upstream and temperature fluctuations induced by the unstable mixing, by visualizing the flow fields with particle image velocimetry and measuring fluid-temperature fluctuation in the vicinity of a wall. From the visualization, it is clarified that a high-temperature jet flowing out from a branch pipe swings and sways near the wall, though the mixing patterns are basically classified into the same ones without the 90-deg bend upstream. Furthermore, there are cautionary conditions in which the temperature fluctuation is maximized in a transition regime between a stratified flow and a turn-jet flow. It seems that the principal cause is repetitional generation and disappearance of a circulating flow formed behind the jet due to an interaction between unsteady behavior of a secondary flow in a decay process after the bend and the wakes formed behind the jet, which leads to the vigorous oscillation of the jet near the wall.
机译:本研究旨在通过用颗粒图像测速仪观察流场并测量流体温度波动来阐明上游90度弯曲的T型结区域的非等温流体混合与不稳定混合引起的温度波动之间的关系。墙附近。从可视化图中可以看出,尽管混合模式基本上被归类为相同的,而上游没有90度弯曲,但从支管流出的高温射流在壁附近摆动和摇摆。此外,存在警告条件,其中在分层流和转向喷射流之间的过渡状态中温度波动最大。似乎主要的原因是由于弯曲后的衰减过程中次级流的不稳定行为与射流后形成的尾流之间的相互作用,导致射流后形成的循环流的重复生成和消失,这是由于射流后形成了强大的射流在壁附近的振荡。

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