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Numerical simulation of motion and deformation of healthy and sick red blood cell through a constricted vessel using hybrid lattice Boltzmann-immersed boundary method

机译:混合晶格玻尔兹曼浸没边界法数值模拟健康和病态红细胞在狭窄血管中运动和变形的数值模拟

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In the present article, hybrid lattice Boltzmann-immersed boundary method is utilized to simulate two-dimensional incompressible viscous flow involving flexible immersed red blood cell (RBC) in a microchannel. The main focus of the present research is to study motion and deformation of both healthy and sick RBCs in a vessel with different sizes of stenosis. The presented computational results consent reasonably well with the available data in the literature. Two different channels i.e. a simple and a constricted channel are investigated in the present manuscript. The results show that the RBC transfer and deform without any lift force and rotation induced when it is located on the symmetry axis of the microchannel. However, when the RBC is located off the symmetry axis, the pressure difference produced in the flow around the RBC would apply lift forces on them and expel them towards the center of the channel. The healthy RBC always shows more deformation related to the sick one along the channel. Another important result of the present research is that for the ratio of a sick RBC cannot pass the stenosis, and it reasons serious difficulties for body. The present results have been compared with the available experimental and numerical results which show good agreements.
机译:在本文中,混合格子玻尔兹曼浸入边界方法被用来模拟二维的不可压缩的粘性流,其中涉及微通道中的柔性浸入式红细胞(RBC)。本研究的主要重点是研究具有不同狭窄程度的血管中健康和生病的RBC的运动和变形。给出的计算结果与文献中的可用数据相当吻合。本稿件研究了两种不同的通道,即简单通道和受限通道。结果表明,当RBC位于微通道的对称轴上时,RBC的传递和变形不会引起任何提升力和旋转。但是,当RBC偏离对称轴时,RBC周围的流中产生的压差将在其上施加升力并将其推向通道中心。健康的RBC总是显示出与沿通道的患病者有关的更多变形。本研究的另一个重要结果是,由于患病的红细胞的比例不能通过狭窄,这给身体带来了严重的困难。目前的结果已经与可用的实验和数值结果进行了比较,这些结果显示出很好的一致性。

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