Literature DB >> 19740920

Inflow boundary profile prescription for numerical simulation of nasal airflow.

D J Taylor1, D J Doorly, R C Schroter.   

Abstract

Knowledge of how air flows through the nasal passages relies heavily on model studies, as the complexity and relative inaccessibility of the anatomy prevents detailed in vivo measurement. Almost all models to date fail to incorporate the geometry of the external nose, instead employing a truncated inflow. Typically, flow is specified to enter the model domain either directly at the nares (nostrils), or via an artificial pipe inflow tract attached to the nares. This study investigates the effect of the inflow geometry on flow predictions during steady nasal inspiration. Models that fully replicate the internal and external nasal airways of two anatomically distinct subjects are used as a reference to compare the effects of common inflow treatments on physiologically relevant quantities including regional wall shear stress and particle residence time distributions. Inflow geometry truncation is found to affect flow predictions significantly, though slightly less so for the subject displaying more pronounced passage area contraction up to the internal nasal valve. For both subject geometries, a tapered pipe inflow provides a better approximation to the natural inflow than a blunt velocity profile applied to the nares. Computational modelling issues are also briefly outlined, by comparing quantities predicted using different surface tessellations, and by evaluation of domain-splitting techniques.

Mesh:

Year:  2009        PMID: 19740920      PMCID: PMC2842801          DOI: 10.1098/rsif.2009.0306

Source DB:  PubMed          Journal:  J R Soc Interface        ISSN: 1742-5662            Impact factor:   4.118


  26 in total

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Review 2.  Mechanics of airflow in the human nasal airways.

Authors:  D J Doorly; D J Taylor; R C Schroter
Journal:  Respir Physiol Neurobiol       Date:  2008-08-14       Impact factor: 1.931

3.  A numerical model of nasal odorant transport for the analysis of human olfaction.

Authors:  K Keyhani; P W Scherer; M M Mozell
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Authors:  S Schreck; K J Sullivan; C M Ho; H K Chang
Journal:  J Appl Physiol (1985)       Date:  1993-10

5.  Velocity profiles measured for airflow through a large-scale model of the human nasal cavity.

Authors:  I Hahn; P W Scherer; M M Mozell
Journal:  J Appl Physiol (1985)       Date:  1993-11

6.  In vitro experiments and numerical simulations of airflow in realistic nasal airway geometry.

Authors:  Céline Croce; Redouane Fodil; Marc Durand; Gabriela Sbirlea-Apiou; Georges Caillibotte; Jean-François Papon; Jean-Robert Blondeau; André Coste; Daniel Isabey; Bruno Louis
Journal:  Ann Biomed Eng       Date:  2006-05-05       Impact factor: 3.934

7.  Anterior distribution of human olfactory epithelium.

Authors:  D A Leopold; T Hummel; J E Schwob; S C Hong; M Knecht; G Kobal
Journal:  Laryngoscope       Date:  2000-03       Impact factor: 3.325

8.  Human odor detectability: new methodology used to determine threshold and variation.

Authors:  James C Walker; Sandra B Hall; Dianne B Walker; Martin S Kendal-Reed; Alison F Hood; Xu-Feng Niu
Journal:  Chem Senses       Date:  2003-11       Impact factor: 3.160

9.  Effect of anatomy on human nasal air flow and odorant transport patterns: implications for olfaction.

Authors:  Kai Zhao; Peter W Scherer; Shoreh A Hajiloo; Pamela Dalton
Journal:  Chem Senses       Date:  2004-06       Impact factor: 3.160

10.  Atrophic rhinitis: a CFD study of air conditioning in the nasal cavity.

Authors:  Guilherme J M Garcia; Neil Bailie; Dário A Martins; Julia S Kimbell
Journal:  J Appl Physiol (1985)       Date:  2007-06-14
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  14 in total

1.  Normative ranges of nasal airflow variables in healthy adults.

Authors:  Azadeh A T Borojeni; Guilherme J M Garcia; Masoud Gh Moghaddam; Dennis O Frank-Ito; Julia S Kimbell; Purushottam W Laud; Lisa J Koenig; John S Rhee
Journal:  Int J Comput Assist Radiol Surg       Date:  2019-07-02       Impact factor: 2.924

2.  Flow and air conditioning simulations of computer turbinectomized nose models.

Authors:  J Pérez-Mota; F Solorio-Ordaz; J Cervantes-de Gortari
Journal:  Med Biol Eng Comput       Date:  2018-04-16       Impact factor: 2.602

3.  New CFD tools to evaluate nasal airflow.

Authors:  M A Burgos; E Sanmiguel-Rojas; C Del Pino; M A Sevilla-García; F Esteban-Ortega
Journal:  Eur Arch Otorhinolaryngol       Date:  2017-05-25       Impact factor: 2.503

4.  Effects of Surface Smoothness on Inertial Particle Deposition in Human Nasal Models.

Authors:  Jeffry D Schroeter; Guilherme J M Garcia; Julia S Kimbell
Journal:  J Aerosol Sci       Date:  2011-01-01       Impact factor: 3.433

5.  Comparison of rhinomanometric and computational fluid dynamic assessment of nasal resistance with respect to measurement accuracy.

Authors:  Nora Schmidt; Hans Behrbohm; Leonid Goubergrits; Thomas Hildebrandt; Jan Brüning
Journal:  Int J Comput Assist Radiol Surg       Date:  2022-07-11       Impact factor: 3.421

6.  The effect of airway motion and breathing phase during imaging on CFD simulations of respiratory airflow.

Authors:  Chamindu C Gunatilaka; Andreas Schuh; Nara S Higano; Jason C Woods; Alister J Bates
Journal:  Comput Biol Med       Date:  2020-11-01       Impact factor: 4.589

7.  A CFD approach to understand nasoseptal perforations.

Authors:  M A Burgos; E Sanmiguel-Rojas; R Rodríguez; F Esteban-Ortega
Journal:  Eur Arch Otorhinolaryngol       Date:  2018-07-24       Impact factor: 2.503

8.  Variability in Nose-to-Lung Aerosol Delivery.

Authors:  Ross L Walenga; Geng Tian; Michael Hindle; Joshua Yelverton; Kelley Dodson; P Worth Longest
Journal:  J Aerosol Sci       Date:  2014-12-01       Impact factor: 3.433

9.  Dynamics of airflow in a short inhalation.

Authors:  A J Bates; D J Doorly; R Cetto; H Calmet; A M Gambaruto; N S Tolley; G Houzeaux; R C Schroter
Journal:  J R Soc Interface       Date:  2015-01-06       Impact factor: 4.118

10.  Standardization of Malaysian adult female nasal cavity.

Authors:  Chih Fang Lee; Mohd Zulkifly Abdullah; Kamarul Arifin Ahmad; Ibrahim Lutfi Shuaib
Journal:  Comput Math Methods Med       Date:  2013-06-15       Impact factor: 2.238

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