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Lattice Boltzmann Model of 3D Multiphase Flow in Artery Bifurcation Aneurysm Problem

机译:动脉分叉动脉瘤问题的3D多相流的格子Boltzmann模型

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摘要

This paper simulates and predicts the laminar flow inside the 3D aneurysm geometry, since the hemodynamic situation in the blood vessels is difficult to determine and visualize using standard imaging techniques, for example, magnetic resonance imaging (MRI). Three different types of Lattice Boltzmann (LB) models are computed, namely, single relaxation time (SRT), multiple relaxation time (MRT), and regularized BGK models. The results obtained using these different versions of the LB-based code will then be validated with ANSYS FLUENT, a commercially available finite volume- (FV-) based CFD solver. The simulated flow profiles that include velocity, pressure, and wall shear stress (WSS) are then compared between the two solvers. The predicted outcomes show that all the LB models are comparable and in good agreement with the FVM solver for complex blood flow simulation. The findings also show minor differences in their WSS profiles. The performance of the parallel implementation for each solver is also included and discussed in this paper. In terms of parallelization, it was shown that LBM-based code performed better in terms of the computation time required.
机译:由于难以使用标准成像技术(例如磁共振成像(MRI))确定和可视化血管中的血流动力学情况,因此本文模拟并预测了3D动脉瘤几何结构内部的层流。计算了三种不同类型的莱迪思玻尔兹曼(LB)模型,即单张弛豫时间(SRT),多张弛豫时间(MRT)和正则化BGK模型。使用这些不同版本的基于LB的代码获得的结果将通过ANSYS FLUENT进行验证,ANSYS FLUENT是基于有限体积(FV)的商用CFD求解器。然后在两个求解器之间比较包括流速,压力和壁切应力(WSS)的模拟流量分布。预测结果表明,对于复杂的血流模拟,所有的LB模型都是可比的,并且与FVM求解器非常吻合。调查结果还显示,他们的WSS配置文件存在细微差异。本文还包括并讨论了每个求解器的并行实现的性能。在并行化方面,已证明基于LBM的代码在所需的计算时间方面表现更好。

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