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Computational Fluid Dynamics Modeling of Respiratory Airflow in Tracheobronchial Airways of Infant, Child, and Adult

机译:婴幼儿,儿童和成人气管呼吸道呼吸气流的计算流体动力学建模

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摘要

During human growth and development from infancy to adulthood, dramatic changes occur in the respiratory system. It is important to understand respiratory airflow in different age groups in age-specific treatment of respiratory disorders. This study numerically investigated the age-related effects on inspiratory and expiratory airflow dynamics in four-generation lung airway models under normal breathing conditions. Tracheobronchial airway models of infant (6 month old), child (5 years old), and adult (25 years old) from sixth to ninth generations were constructed for the study. Computational fluid dynamics (CFD) was used to solve the equations governing the airflow. Results of this study indicate that as age increases, airflow velocity, pressure, and wall shear stress decrease for both inspiration and expiration in this particular subregion of the respiratory tract. During inspiration, the splitting of velocity streamlines at bifurcations increases with age. The opposite situation merging happens during expiration, and it also increases with age. The level of splitting and merging of streamlines here reflects the influence of respiratory mechanics in the age groups. The computational models provide new information on characteristics and patterns of age-dependent respiratory airflow in the sixth to ninth generations of tracheobronchial airways and can be applied in other generations.
机译:在人类生长和发展从婴儿期到成年期,呼吸系统中发生了巨大变化。在特异性治疗呼吸障碍治疗不同年龄组中了解呼吸气流非常重要。本研究在正常呼吸条件下,数值研究了四代肺气道模型中吸气和呼气气流动力学的年龄相关影响。研究了婴儿(6个月大的),儿童(5岁)和成人(25岁)的气管支出型号,为这项研究建造了第六至第九世代。使用计算流体动力学(CFD)来解决控制气流的方程。该研究的结果表明,随着年龄的增长,气流速度,压力和壁剪切应力在呼吸道的这种特定子区域中的灵感和到期。在灵感期间,分叉处的速度流速度分裂随着年龄的增长而增加。在到期时,相反的情况合并,它也随着年龄的增长而增加。这里的流线的分裂水平和合并反映了呼吸力学在年龄组中的影响。计算模型提供了关于第六至第九世代的依赖呼吸气流的特性和模式的新信息,并且可以应用于其他几代人。

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    Endalew Getnet Tsega;

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  • 年度 2018
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