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A rapid interpolation method of finding vascular CFD solutions with spectral collocation methods

机译:光谱搭配法快速找到血管CFD解的内插方法

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摘要

We propose a rapid interpolation method of computational fluid dynamics (CFD) solution based on the collocation method for vascular flows through the polynomial interpolation and present a proof-of-concepr computation of our preliminary results. A rapid CFD can play a crucial role for some applications such as the hemodynamics assessment for human vasculature in the emergent situation. The CFD approach for the real-time assessment at the clinical level is, however, not a practical tool due to the computational complexity and the long time integration needed for the individual CFDs. We propose an efficient, accurate, yet fast interpolation method of finding CFD solutions that can be utilized for the realtime hemodynamic analysis for clinicians. The main idea of the method is to use the vascular library where vascular solutions with different parameter values are pre-computed and stored. The desired unknown CFD solution is obtained via the interpolation using the similar solutions from the library. We use the spectral collocation method for the individual CFD solutions. The collocation method makes it easier to map the solution from the physical domain to the reference domain for the interpolation using the homeomorphic transformation. The interpolation is then directly constructed using the solution fields at the collocation points. Our preliminary results for vascular flows of 3D stenosis show that the proposed method is fast and accurate.
机译:我们基于通过多项式插值的血管流搭配方法,提出了一种快速计算流体动力学(CFD)解决方案的插值方法,并提出了初步结果的概念验证计算。快速CFD在某些应用中起着至关重要的作用,例如在紧急情况下对人体脉管的血液动力学评估。但是,由于计算复杂性以及各个CFD所需的长时间集成,用于临床级别实时评估的CFD方法不是实用工具。我们提出了一种有效,准确但快速的内插方法来查找CFD解决方案,可用于临床医生的实时血液动力学分析。该方法的主要思想是使用血管库,其中预先计算并存储了具有不同参数值的血管溶液。使用库中的相似解通过插值获得所需的未知CFD解。我们将频谱搭配方法用于各个CFD解决方案。配置方法使使用同胚变换将解从物理域映射到参考域变得更加容易,以进行插值。然后使用并置点处的解字段直接构造插值。我们对3D狭窄血管流动的初步结果表明,该方法是快速而准确的。

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