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A black-box decomposition approach for coupling heterogeneous components in hemodynamics simulations

机译:在血液动力学模拟中耦合异质成分的黑匣子分解方法

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This work presents a generic and efficient black-box approach for the strong iterative coupling of dimen-sionally heterogeneous flow models in computational hemodynamics. A heterogeneous model of the cardiovascular system is formed by several vascular black-box components, which are connected through coupling equations. The associated system of equations is solved using the Broyden algorithm. In addition, a multiple time-stepping strategy is introduced to meet different component requirements. The proposed algorithm is employed to split a 3D-1D-0D closed-loop model of the cardiovascular system into corresponding black-box components standing for the 3D (specific vessels), 1D (systemic arteries/peripheral vessels), and 0D (venous/cardiac/pulmonary circulation) components. Examples of application are presented showing the robustness and suitability of this novel approach.
机译:这项工作提出了一种通用且有效的黑匣子方法,用于在计算血液动力学中对多维异质流模型进行强迭代耦合。心血管系统的异质性模型由几个血管黑匣子组成,它们通过耦合方程连接。相关的方程组使用Broyden算法求解。另外,引入了多个时间步长策略来满足不同的组件要求。提出的算法用于将心血管系统的3D-1D-0D闭环模型拆分为代表3D(特定血管),1D(系统性动脉/周围血管)和0D(静脉/心脏/肺循环)组件。给出了应用示例,显示了此新颖方法的鲁棒性和适用性。

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