首页> 外文期刊>International journal of design & nature and ecodynamics >INVESTIGATION OF PULSATILE FLOW IN THE UPPER HUMAN AIRWAYS
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INVESTIGATION OF PULSATILE FLOW IN THE UPPER HUMAN AIRWAYS

机译:上呼吸道脉动性的调查

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The pulsatile flow field in the human lung is numerically and experimentally investigated. The realistic lung geometry of a human subject was acquired down to the sixth generation of bifurcation and used as a tra-cheobronchial model. The numerical analysis is based on a Lattice-Boltzmann method which is particularly suited for flows in extremely intricate geometries such as the upper human airways. The measurements are performed via the particle-image velocimetry method in a transparent cast generated from the original data-set. Experimental and numerical results are analyzed in a comparative way and a thorough discussion of the three-dimensional flow structures emphasizes the unsteady character of the flow field. It is evidenced that the asymmetric geometry of the human lung plays a significant role for the development of the flow field in the respiratory system. Secondary vortex structures and their temporal formation are analyzed and described in detail for two respiration frequencies. It is shown that the qualitative structure of the intricate flow field does not vary if a critical mass flux rate is exceeded. At inspiration, the primary flow shows separated flow regions and is highly influenced by secondary flow structures. By contrast, at expiration the primary flow distribution is far more homogeneous with a higher level of vorticity.
机译:对人肺中的搏动流场进行了数值和实验研究。直到第六代分叉为止,人类受试者的真实肺部几何结构都被用作气管支气管模型。数值分析是基于Lattice-Boltzmann方法进行的,该方法特别适用于几何形状极为复杂的流动,例如人的上呼吸道。通过粒子图像测速法在从原始数据集生成的透明模型中进行测量。对实验和数值结果进行了比较分析,对三维流动结构的透彻讨论强调了流场的不稳定特性。有证据表明,人肺的不对称几何形状对呼吸系统中流场的发展起着重要作用。对于两个呼吸频率,分析并详细描述了次级涡旋结构及其时间形成。结果表明,如果超过临界质量通量率,复杂流场的定性结构不会改变。受到启发时,主流显示出分开的流区域,并且受次级流结构的影响很大。相比之下,在呼气时,主气流分布要均匀得多,涡度更高。

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