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Numerical assessment of pulsatile flow through diverging tees with a sharp-and round-edge junction

机译:带有尖锐和圆边连接的发散三通的脉动流的数值评估

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Unsteady flow through diverging tees is of interest in many industrial systems and physiological applications. In this study, the characteristics of the transient flow behaviors at the junctions of diverging tees with sharp- and round-edge junctions were investigated numerically based on physiological boundary conditions. The flow conditions were characterized based on a Newtonian fluid analogous to blood with a Womersley number of 23.13 and a mean inlet Reynolds number of 652. The results from this study demonstrate the onset conditions of flow separation at the upstream end of both branches and the relationship between the axial and secondary flow fields. For both junctions, the onset condition of separation and the strength of recirculation correspond closely to the momentum of the secondary boundary layer adjacent to the inner-wall of the branch. The nature of the boundary layer is strongly dependent on the structures of the vortical cells. The round-edge junction attenuates the strength of recirculation by triggering flow separation at a much lower flow rate ratio. The strength of the recirculation was found to be inversely proportional to the strength of the secondary flow. The reduction of the strength of recirculation leads to an increase in wall shear stress level and a decrease in oscillation effects.
机译:在许多工业系统和生理应用中,通过分流三通产生的不稳定流量是很重要的。在这项研究中,基于生理边界条件,对具有尖锐边缘和圆形边缘连接的三通的连接处的瞬态流动特性进行了数值研究。基于类似于血液的牛顿流体来表征流动条件,其沃默斯利数为23.13,平均入口雷诺数为652。这项研究的结果证明了两个分支上游端流动分离的起始条件及其关系。在轴向流场和次级流场之间。对于这两个连接点,分离的开始条件和再循环强度都与邻近分支内壁的第二边界层的动量紧密对应。边界层的性质在很大程度上取决于涡室的结构。圆边结通过以低得多的流速比率触发流分离来减弱再循环的强度。发现再循环的强度与二次流的强度成反比。再循环强度的降低导致壁切应力水平的增加和振动效果的降低。

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