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A diffuse interface method for the Navier-Stokes/Darcy equations: Perfusion profile for a patient-specific human liver based on MRI scans

机译:Navier-Stokes / Darcy方程的扩散接口方法:基于MRI扫描的特定患者肝脏的灌注曲线

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We present a diffuse interface method for coupling free and porous-medium-type flows modeled by the Navier-Stokes and Darcy equations. Its essential component is a diffuse geometry model generated from the phase-field solution of a separate initial boundary value problem that is based on the Allen-Cahn equation. Phase-field approximations of the interface and its gradient are then employed to transfer all interface terms in the coupled variational flow formulation into volumetric terms. This eliminates the need for an explicit interface parametrization between the two flow regimes. We illustrate accuracy and convergence for a series of benchmark examples, using standard low-order stabilized finite element discretizations. Our diffuse interface method is particularly attractive for coupled flow analysis on imaging data with complex implicit interfaces, where procedures for deriving explicit surface parametrizations constitute a significant bottleneck. We demonstrate the potential of our method to establish seamless imaging-through-analysis workflows by computing a perfusion profile for a full-scale 3D human liver based on MRI scans. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一种扩散界面方法,用于耦合由Navier-Stokes和Darcy方程建模的自由和多孔介质类型的流动。它的基本组成部分是一个扩散的几何模型,该模型是根据基于Allen-Cahn方程的单独的初始边值问题的相场解生成的。然后采用界面的相场近似及其梯度,将耦合变分流量公式中的所有界面项转换为体积项。这消除了在两个流动状态之间进行显式接口参数化的需要。我们使用标准的低阶稳定有限元离散化方法说明了一系列基准示例的准确性和收敛性。对于具有复杂隐式接口的成像数据进行耦合流分析,我们的扩散接口方法特别有吸引力,其中用于导出显式表面参数化的过程构成了很大的瓶颈。通过展示基于MRI扫描的全尺寸3D人体肝脏的灌注曲线,我们证明了该方法通过分析建立无缝成像工作流程的潜力。 (C)2017 Elsevier B.V.保留所有权利。

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