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A Partial Domain Approach to Enable Aortic Flow Simulation Without Turbulent Modeling

机译:一种部分域方法,实现无湍流造型的主动脉仿真

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Analysis of hemodynamics shows great potential to provide indications for the risk of cardiac malformations and is essential for diagnostic purposes in clinical applications. Computational fluid dynamics (CFD) has been established as a valuable tool for the detailed characterization of volumetric blood flow and its effects on the arterial wall. However, studies concentrating on the aortic root have to take the turbulent nature of the flow into account while no satisfactory solution for such simulations exists today. In this paper we propose to combine magnetic resonance imaging (MRI) flow acquisitions, providing excellent data in the turbulent regions while showing only limited reliability in the boundary layer, with CFD simulations which can be used to extrapolate the measured data towards the vessel wall. The solution relies on a partial domain approach, restricting the simulations to the laminar flow domain while using MRI measurements as additional boundary conditions to drive the numerical simulation. In this preliminary work we demonstrate the feasibility of the method on flow phantom measurements while comparing actually measured and simulated flow fields under straight and spiral flow regimes.
机译:血流动力学的分析表明,为心脏畸形风险提供适应症的巨大潜力,并且对于临床应用中的诊断目的是必不可少的。已经建立了计算流体动力学(CFD)作为有价值的工具,用于详细表征体积血流量及其对动脉壁的影响。然而,集中在主动脉根部的研究必须考虑流动的动荡性,同时今天不存在这种模拟的令人满意的解决方案。在本文中,我们建议将磁共振成像(MRI)流量采集组合,在湍流区域中提供出色的数据,同时仅在边界层中显示有限的可靠性,CFD模拟可用于将测量的数据推向血管壁。解决方案依赖于部分域方法,将模拟限制在层流域中,同时使用MRI测量作为额外的边界条件以驱动数值模拟。在这项初步工作中,我们展示了方法对流动幻像测量方法的可行性,同时在直线和螺旋流动状态下比较实际测量和模拟流场。

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