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Lagrangian methods for blood damage estimation in cardiovascular devices-How numerical implementation affects the results

机译:拉格朗日方法估算心血管设备的血液损伤-数值实现如何影响结果

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This paper evaluated the influence of various numerical implementation assumptions on predicting blood damage in cardiovascular devices using Lagrangian methods with Eulerian computational fluid dynamics. The implementation assumptions that were tested included various seeding patterns, stochastic walk model, and simplified trajectory calculations with pathlines. Post processing implementation options that were evaluated included single passage and repeated passages stress accumulation and time averaging. This study demonstrated that the implementation assumptions can significantly affect the resulting stress accumulation, i.e., the blood damage model predictions. Careful considerations should be taken in the use of Lagrangian models. Ultimately, the appropriate assumptions should be considered based the physics of the specific case and sensitivity analysis, similar to the ones presented here, should be employed.
机译:本文评估了各种数值实施假设对使用拉格朗日方法和欧拉计算流体动力学方法预测心血管设备血液损伤的影响。经过测试的实现假设包括各种播种模式,随机游走模型以及带有路径的简化轨迹计算。评估的后期处理实施方案包括单次通过和重复进行的应力累积和时间平均。这项研究表明,实施假设可能会严重影响由此产生的压力累积,即血液损害模型的预测。在使用拉格朗日模型时应谨慎考虑。最终,应根据具体情况的物理条件考虑适当的假设,并应采用与此处介绍的相似的敏感性分析。

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