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Transient numerical simulation of airflow and fibrous particles in a human upper airway model

机译:人体上气道模型中气流和纤维颗粒的瞬态数值模拟

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In this study, the unsteady airflow field in a realistic model of human upper airways during the breathing cycle and the fibrous particle transport and deposition were investigated using the CFD method. An anatomically realistic model of airway passage including vestibule to the end of the trachea was constructed from the CT images of a 24-year-old healthy woman. Several user-defined functions (UDFs) were developed and incorporated into the discrete phase model (DPM) of ANSYS Fluent code and were used for the evaluation of ellipsoidal particle motion in transient airflows. The developed UDF was used to solve the coupled translational and rotational equations of motion of ellipsoidal fibers and to analyze their dispersion and deposition in the upper airways. The total and regional depositions for a range of fiber sizes were evaluated. The transient particle deposition fraction was compared with those obtained for the equivalent steady flow condition. In addition, the fraction of ellipsoidal fibers that penetrate the lower respiratory tract under cyclic breathing was calculated and compared with the steady flow simulation. The presented results showed that the steady simulation with an appropriate equivalent airflow rate can predict the total fibrous particle deposition during cyclic breathing with reasonable accuracy. The steady simulations, however, cannot properly predict the regional particle deposition under transient flows. In particular, the comparison between steady and transient penetration fraction reveals that the steady breathing model fails to accurately predict the penetration fraction of ellipsoidal fibers into the lower respiratory tract.
机译:在该研究中,使用CFD方法研究了在呼吸循环期间人上气道的现实模型中的不稳定气流场和纤维颗粒输送和沉积。从一名24岁健康女性的CT图像构建了包括前庭的气道通道的解剖学逼真模型,包括24岁健康女性的CT图像。开发了几种用户定义的功能(UDF)并结合到ANSYS精通代码的离散相位模型(DPM)中,并用于评估瞬态气流中的椭圆形粒子运动。开发的UDF用于解决椭圆形纤维运动的耦合平移和旋转方程,并分析其在上呼吸道中的分散和沉积。评估了一系列纤维尺寸的总和区域沉积。将瞬时颗粒沉积级分与用于等效稳定流动条件的那些进行比较。另外,计算在循环呼吸下渗透下呼吸道的椭圆纤维的级分,并与稳定的流动模拟进行比较。所提出的结果表明,具有适当的等效气流速率的稳定模拟可以预测循环呼吸期间的总纤维颗粒沉积,具有合理的精度。然而,稳定模拟不能正确预测瞬态流动下的区域粒子沉积。特别地,稳态和瞬态穿透部分之间的比较揭示了稳定呼吸模型不能准确地预测椭圆形纤维的渗透分数进入下呼吸道。

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