Numerical Simulation of Oscillatory Flow in Realistic Model Human Airways
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概要
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Computational fluid dynamics (CFD) simulations were carried out for an oscillatory flow in a 3D realistic model of the human central airways to reveal the effect of airway geometry on the oscillatory flow structure. This 3D realistic airway model is a computational model of multi-branching airway constructed based on X-ray CT images of actual human airways in which the airway diameter ranged from approx. 2 to 14 mm, and the flow in this airway model was simulated using CFD software (Fluent). The resultant inspiratory flow patterns in this 3D realistic airway model were relatively similar to patterns observed in a simplified planar multi-branching airway model, whereas the expiratory flow patterns strongly depended on the realistic airway geometry and showed more complicated secondary flow patterns. Secondary flow velocities were higher in the realistic airway model than in the simplified airway model in both the inspiratory and expiratory flows. Langrangian fluid particle tracking clarified the convective dispersion due to asymmetric inspiratory and expiratory velocity profiles.
- 一般社団法人 日本機械学会の論文
著者
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Hishida Makoto
Department Electronics And Mechanical Engineering Chiba University
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Haneishi Hideaki
Research Center For Frontier Medical Engineering Chiba University
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Tanaka Gaku
Department Electronics And Mechanical Engineering Chiba University
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INAGAKI Genri
Department of Electronics and Mechanical Engineering, Chiba University
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HU Xiao
Fluent Asia Pacific Co., Ltd.
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