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A two-dimensional numerical study of peristaltic contractions in obstructed ureter flows

机译:输尿管阻塞血流蠕动收缩的二维数值研究

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The flow of urine from the kidneys to the bladder is accomplished via peristaltic contractions in the ureters. The peristalsis of urine through the ureter can sometimes be accompanied, more specifically, obstructed to a certain degree, by entities such as kidney stones. In this paper, 2D axisymmetric computational fluid dynamics simulations are carried out using the commercial code ANSYS FLUENT, to model the peristaltic movement of the ureter with and without stone. The peristaltic movement was assumed to be a sinusoidal wave on the boundary of the ureter with a specific physiological velocity. While the first part of the study considers flow in the ureter with prescribed peristaltic contractions in absence of any obstruction, the second part compares the effect of varying obstructions (0, 5, 15, and 35%) in terms of spherical stones of different sizes. Pressure contours, velocity vectors, and profiles of pressure gradient magnitudes and wall shear stresses are presented along one bolus of the ureter, during contraction and expansion of the ureteral wall, in order to understand backflow, trapping and reflux phenomena, as well as monitor the health of the ureteral wall in the presence of any obstruction. The 35% ureteral obstruction case resulted in a significant backflow at the inlet in comparison to the other cases, and also a wall shear stress that was up to 20x larger than the case without any obstruction.
机译:尿液从肾脏流向膀胱的过程是通过输尿管的蠕动收缩来实现的。通过输尿管的尿液蠕动有时会被诸如肾结石之类的实体伴随,更具体地,在一定程度上被阻塞。在本文中,使用商业代码ANSYS FLUENT进行了二维轴对称计算流体动力学模拟,以模拟有或没有石块的输尿管的蠕动运动。蠕动被假定为输尿管边界上具有特定生理速度的正弦波。虽然研究的第一部分考虑了在没有任何阻塞的情况下具有规定的蠕动收缩的输尿管中的血流,但第二部分比较了不同大小的球形结石对各种阻塞(0、5、15和35%)的影响。在输尿管壁收缩和扩张过程中,沿输尿管的一个推注显示了压力轮廓,速度矢量以及压力梯度大小和壁切应力的分布图,以便了解回流,截留和回流现象,并监控有任何阻塞时输尿管壁的健康状况。与其他情况相比,输尿管阻塞病例为35%,导致入口处明显回流,壁剪切应力比没有阻塞的情况大20倍。

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