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  • Validation of numerical simulation using experimental data is necessary prerequisite for authentication of proper use of numerical method. This article deals with comparison of velocities on idealized model of human upper airways during stationary inspiration for three different breathing regimes. For the purpose of this study, the model which includes realistic geometry of mouth cavity and glottis coupled with idealized geometry of trachea and bronchial tree up to fourth generation of branching was made. Calculations were compared with experiments acquired by Phase-Doppler Particle Anemometry (P/DPA) on identical geometry. Velocity data were compared on three points in trachea. Specific air flow characteristics are documented and discussed based on results of the numerical simulation of the velocity field.
  • Validation of numerical simulation using experimental data is necessary prerequisite for authentication of proper use of numerical method. This article deals with comparison of velocities on idealized model of human upper airways during stationary inspiration for three different breathing regimes. For the purpose of this study, the model which includes realistic geometry of mouth cavity and glottis coupled with idealized geometry of trachea and bronchial tree up to fourth generation of branching was made. Calculations were compared with experiments acquired by Phase-Doppler Particle Anemometry (P/DPA) on identical geometry. Velocity data were compared on three points in trachea. Specific air flow characteristics are documented and discussed based on results of the numerical simulation of the velocity field. (en)
Title
  • Investigation of air flow in idealized model of human respiratory tract
  • Investigation of air flow in idealized model of human respiratory tract (en)
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  • Investigation of air flow in idealized model of human respiratory tract
  • Investigation of air flow in idealized model of human respiratory tract (en)
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  • RIV/00216305:26210/12:PU99486!RIV13-GA0-26210___
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  • P(GAP105/11/1339), P(GD101/09/H050), P(OC10052), S
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  • 142872
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  • RIV/00216305:26210/12:PU99486
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  • Lungs, air flow fields, CFD (en)
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  • [8D11CC2B7DC2]
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  • Mikulov
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  • Brno
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  • Sborník příspěvků 31. mezinárodní konference Setkání kateder mechaniky tekutin a termomechaniky
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  • Jedelský, Jan
  • Jícha, Miroslav
  • Lízal, František
  • Elcner, Jakub
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number of pages
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  • Vysoké učení technické v Brně
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  • 978-80-214-4529-1
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  • 26210
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