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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Numerical Study on Variation of Feedback Methods in Ultrasonic-Measurement-Integrated Simulation of Blood Flow in the Aneurysmal Aorta
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Numerical Study on Variation of Feedback Methods in Ultrasonic-Measurement-Integrated Simulation of Blood Flow in the Aneurysmal Aorta

机译:超声测量集成模拟动脉瘤主动脉血流中反馈方法变化的数值研究

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摘要

The complicated relationships between hemodynamics and aneurysms have been investigated intensively. However, existing methodologies have inherent limitations in providing real blood flow fields. The authors have proposed Ultrasonic-Measurement-Integrated (UMI) simulation, in which the feedback signals lead to convergence of the calculated blood flow structure to the real one even with incorrect boundary/initial conditions. In UMI simulation, determination of the feedback law is substantially important, but detailed particulars remain to be accounted for. In this paper, first, the effects of density of feedback points and feedback domains are systematically investigated. Improvement of computational accuracy in the feedback domain is achieved even in low density of feedback points of 25%, and such improvement persists in the downstream region. Secondly, the most effective combination of feedback gains for momentum and pressure equations is investigated, confirming the validity of the simple condition to use the same value for the velocity and pressure gains.
机译:血液动力学和动脉瘤之间的复杂关系已得到深入研究。然而,现有方法在提供实际血流场方面具有固有的局限性。作者提出了超声测量集成(UMI)模拟,其中即使在边界/初始条件不正确的情况下,反馈信号也可以使计算出的血流结构收敛到实际结构。在UMI模拟中,确定反馈定律非常重要,但仍需考虑详细的细节。在本文中,首先,系统地研究了反馈点和反馈域密度的影响。即使在反馈点的密度低至25%的情况下,也可以实现反馈域中计算精度的提高,并且这种改进持续存在于下游区域。其次,研究了动量和压力方程的反馈增益的最有效组合,从而确认了简单条件的有效性,即对速度和压力增益使用相同的值。

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