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首页> 外文期刊>International journal for numerical methods in biomedical engineering >A novel formulation for Neumann inflow boundary conditions in biomechanics
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A novel formulation for Neumann inflow boundary conditions in biomechanics

机译:生物力学中诺伊曼流入边界条件的新公式

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摘要

Neumann boundary conditions prescribing the total momentum flux at inflow boundaries of biomechanical problems are proposed in this study. This approach enables the simultaneous application of velocity/flow rate and pressure curves at inflow boundaries. As the basic numerical method, a residual-based variational multiscale (or stabilized) finite element method is presented. The focus of the numerical examples in this work is on respiratory flows with complete flow reversals. However, the proposed formulation is just as well suited for cardiovascular flow problems with partial retrograde flow. Instabilities, which were reported for such problems in the literature, are resolved by the present approach without requiring the additional consideration of a Lagrange multiplier technique. The suitability of the approach is demonstrated for two respiratory flow examples, a rather simple tube and complex tracheobronchial airways (up to the fourth generation, segmented from end-expiratory CT images). For the latter example, the boundary conditions are generated from mechanical ventilation data obtained from an intensive care unit patient suffering from acute lung injury. For the tube, analytical pressure profiles can be replicated, and for the tracheobronchial airways, a correct distribution of the prescribed total momentum flux at the inflow boundary into velocity and pressure part is observed.
机译:本研究提出了诺伊曼边界条件,该条件规定了生物力学问题的流入边界处的总动量通量。这种方法可以在流入边界同时应用速度/流速和压力曲线。作为基本数值方法,提出了一种基于残差的变分多尺度(或稳定)有限元方法。在这项工作中,数值示例的重点在于具有完全反向流动的呼吸流动。然而,所提出的制剂也同样适合于具有部分逆行流动的心血管血流问题。用现有方法解决了文献中针对此类问题报道的不稳定性,而无需另外考虑拉格朗日乘数技术。该方法适用于两个呼吸道示例,一个相当简单的导管和复杂的气管支气管气道(直至第四代,均从呼气末CT图像中分割出来)。对于后一个示例,边界条件是根据从重症监护病房患有急性肺损伤的机械通气数据得出的。对于管子,可以复制分析压力曲线,对于气管支气管气道,可以观察到规定的总动量通量在流入边界进入速度和压力部分的正确分布。

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