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首页> 外文期刊>Journal of Aerosol Science >CFD simulation of particle deposition in a reconstructed human oral extrathoracic airway for air and helium-oxygen mixtures
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CFD simulation of particle deposition in a reconstructed human oral extrathoracic airway for air and helium-oxygen mixtures

机译:CFD模拟人类口腔胸外气道中空气和氦氧混合物的颗粒沉积

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摘要

In order to compare the effects of using helium-oxygen and air in assisted breathing and inhalation therapies, flow and particle deposition results were obtained in a realistic model of human oral extrathoracic (ET) airways using computational fluid dynamics (CFD) and pressure loss measurements. As the main deposition mechanism for pharmaceutical aerosols in the ET is inertial impaction, the ET model was reconstructed from medical images to take into account the complexity of realistic morphological features. Calculations were performed with the CFD software Fluent~?, and pressure losses were measured on a cast based on a stereolithographic fabrication of the model. Results show that ET pressure loss and particle deposition are lower with helium-oxygen as compared to air. Moreover, further simulations were performed with various particle sizes and inspiratory flow rates, which indicate that particle deposition in the ET depends on both the Stokes and Reynolds number.
机译:为了比较在辅助呼吸和吸入疗法中使用氦氧和空气的效果,使用计算流体力学(CFD)和压力损失测量值在人口腔胸外(ET)气道的真实模型中获得了流量和颗粒沉积结果。由于ET中药用气雾剂的主要沉积机理是惯性撞击,因此从医学图像重建ET模型,以考虑到现实形态特征的复杂性。用CFD软件Fluent?进行计算,并基于模型的立体光刻法在铸件上测量压力损失。结果表明,与空气相比,氦氧的ET压力损失和颗粒沉积更低。此外,对各种粒径和吸气流速进行了进一步的模拟,这表明ET中的颗粒沉积取决于斯托克斯数和雷诺数。

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