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Penetration flow into a branch pipe causing thermal fatigue at a mixing tee

机译:渗透进入支管,导致混合三通处发生热疲劳

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Flow structure in a branch pipe of the mixing tee was investigated in order to improve the assessment method for thermal fatigue damage. The mixing tests were performed using a test section which was made of transparent acrylic resin and consisted of a horizontal main pipe and a vertical branch pipe. The penetration flow into the branch pipe was observed under the condition of branch flow with low flow velocity. The flow in the branch pipe was classified into three flow patterns: no penetration; entrained penetration; and impinged penetration. These flow patterns depended on the momentum ratio of the main and branch pipes. The entrained penetration was caused by the entrainment of the main flow into the separation region where the branch flow was bent by the main flow and separated from the branch pipe wall. The impinged penetration was the flow pattern in which the main flow impinged on the branch pipe wall and penetrated into the branch pipe. These penetration flows occurred intermittently and the penetration depth changed rapidly. The maximum penetration depth correlated with the momentum ratio.
机译:为了改进热疲劳损伤评估方法,研究了混合三通支管中的流动结构。使用由透明丙烯酸树脂制成并且由水平主管和垂直支管组成的测试部分进行混合测试。在低流速的支流条件下观察到了进入支管的渗透流。支管中的流动分为三种流动方式:无渗透;无渗透;无渗透。夹带渗透;并影响渗透。这些流动方式取决于主管和支管的动量比。夹带的渗透是由于主流夹带进入分离区,在分支区域,分支流被主流弯曲并与分支管壁分离。冲击穿透是其中主流撞击在​​分支管壁上并且渗透到分支管中的流动模式。这些渗透流是间歇性发生的,渗透深度迅速变化。最大穿透深度与动量比相关。

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