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A three-dimensional (3D) two-way coupled fluid-structure interaction (FSI) study of peristaltic flow in obstructed ureters

机译:阻塞性输尿管蠕动流的三维(3D)双向耦合流固耦合研究(FSI)

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摘要

Obstruction in the ureter flow path is one of the most common problems in urinary-related diseases. As the ureter transports the urine using the expansion bolus created by the peristaltic pulses, an obstruction in its path can cause unwanted backflow and can also result in damage to the wall. But in order to understand this further, and specifically to quantify and parametrize the effect of the obstruction in the ureter, a detailed study investigating various level of obstructions in peristaltic ureter flow is necessary. In the current study, full 3D numerical simulations of peristalsis in an obstructed ureter are carried out using a finite element solver along with a two-way coupling between the fluid and structural domain with the arbitrary Eulerian-Lagrangian method. Analysis of the results shows that the larger the obstruction, the higher the wall shear stress and pressure gradient in the fluid. In addition, the amount of backflow increases with increase in the obstruction.
机译:在输尿管相关疾病中,输尿管流路的阻塞是最常见的问题之一。当输尿管利用蠕动脉冲产生的膨胀推注来运送尿液时,其路径中的阻塞会导致不希望的回流,也可能导致对壁的破坏。但是,为了进一步理解这一点,特别是量化和参数化输尿管阻塞的效果,有必要进行详细研究,以研究蠕动输尿管血流中各种级别的阻塞。在当前的研究中,使用有限元求解器以及在流体和结构域之间的双向耦合以及任意欧拉-拉格朗日方法,对阻塞的输尿管中的蠕动进行了完整的3D数值模拟。结果分析表明,障碍物越大,流体中的壁切应力和压力梯度越高。另外,回流的量随着阻塞的增加而增加。

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