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Analysis of the volume of fluid (VOF) method for the simulation of the mucus clearance process with CFD

机译:使用CFD模拟粘液清除过程的液体体积分析(VOF)方法

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The clearance of mucus through coughing is a complex, multiphase process, which is affected principally by mucus viscosity and airflow velocity; however, it is also critically affected by the thickness of the two layers of mucus-the serous and gel layers-and oscillation level. The present study examines the effects of the latter parameters more closely. To do so, the mucus clearance process is simulated with a transient 3D volume of fluid (VOF) multiphase model in ANSYS Fluent. The model includes mucus' bilayer properties and a wide range of boundary conditions were tested. The model was analysed in both a straight tube and a realistic trachea. Ultimately, the model was able to both capture air-mucus interface wave evolution and predict the overall behaviour of the clearance process. The results were consistent with experimental clearance data and numerical airflow simulations, which indicates our methodology is appropriate for future studies. Ultimately, the mere presence of the serous layer was found to increase mucus clearance by more than 15 percent. An oscillating flow enhanced clearance by up to 5 percent. Interestingly, interface wave steepness was found to be inversely correlated with mucus thickness, but directly with mucus velocity, which suggests it will be an interesting parameter for further study.
机译:通过咳嗽清除粘液是一个复杂的多相过程,主要受粘液黏度和气流速度影响。但是,它也受到两层粘液厚度(浆液层和凝胶层)和振荡水平的严重影响。本研究更紧密地检查了后者参数的影响。为此,在ANSYS Fluent中使用瞬态3D体积流体(VOF)多相模型模拟粘液清除过程。该模型包括粘液的双层特性,并测试了多种边界条件。在直管和现实气管中均对模型进行了分析。最终,该模型能够捕获空气-粘液界面波的演变并预测清除过程的整体行为。结果与实验间隙数据和数值气流模拟结果一致,这表明我们的方法适合将来的研究。最终,仅发现浆液层可将粘液清除率提高15%以上。振荡流将间隙提高了5%。有趣的是,发现界面波陡度与粘液厚度成反比,但与粘液速度成反比,这表明它将是进一步研究的有趣参数。

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