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Simulations of time harmonic blood flow in the Mesenteric artery: comparing finite element and lattice Boltzmann methods

机译:肠系膜动脉中时间谐波血流的模拟:比较有限元和格子玻尔兹曼方法

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Background Systolic blood flow has been simulated in the abdominal aorta and the superior mesenteric artery. The simulations were carried out using two different computational hemodynamic methods: the finite element method to solve the Navier Stokes equations and the lattice Boltzmann method. Results We have validated the lattice Boltzmann method for systolic flows by comparing the velocity and pressure profiles of simulated blood flow between methods. We have also analyzed flow-specific characteristics such as the formation of a vortex at curvatures and traces of flow. Conclusion The lattice Boltzmann Method is as accurate as a Navier Stokes solver for computing complex blood flows. As such it is a good alternative for computational hemodynamics, certainly in situation where coupling to other models is required.
机译:背景技术已经模拟了腹主动脉和肠系膜上动脉的收缩血流。使用两种不同的计算血液动力学方法进行了模拟:求解Navier Stokes方程的有限元法和晶格Boltzmann方法。结果我们通过比较两种方法之间模拟血流的速度和压力曲线,验证了格子Boltzmann方法用于收缩血流。我们还分析了特定于流动的特征,例如在曲率和流动轨迹处形成了涡流。结论格子玻尔兹曼方法与Navier Stokes求解器一样精确,可以计算复杂的血流。因此,在需要耦合到其他模型的情况下,它绝对是计算血液动力学的良好选择。

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