Numerical investigation of unsteady particle deposition in a realistic human nasal cavity during inhalation

被引:0
作者
Xin Gu
Jian Wen
Mengmeng Wang
Guanping Jian
Guoxi Zheng
Simin Wang
机构
[1] Xi’an Jiaotong University,School of Energy and Power Engineering
[2] Henan University of Urban Construction,School of Energy and Building Environment Engineering
[3] Xi’an Jiaotong University,School of Chemical Engineering and Technology
[4] Xi’an Jiaotong University,Second Affiliated Hospital of Xi’an Jiaotong University (Xibei Hospital)
来源
Experimental and Computational Multiphase Flow | 2019年 / 1卷
关键词
nasal cavity; unsteady; particle deposition; inhalation;
D O I
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学科分类号
摘要
It is important to understand the patterns of two-phase flow in human nasal cavity in exploring the nasal pathology knowledge. In this paper, a realistic human nasal cavity geometry obtained from CT scans was applied to investigate the unsteady particle deposition during inhalation. The transient airflow pattern in the nasal cavity was investigated through imposing two sine wave curves at inlet with the tidal volume of 159 and 318 mL. The time-varying particle deposition pattern in the nasal cavity and a comparison of deposition characteristic between steady and unsteady inhalation were studied using the Lagrangian approach. By releasing particles continuously during inhalation, it was found that the highest transient deposition appeared about 1.4 s and the particle deposition at different time intervals was strongly depended on the instantaneous inlet flow rate. The total deposition of micro particles ranging from 1 to 20 μm under unsteady inhalation was almost the same as that at steady state when the volume of inhaled airflow was equivalent. The deposition in the anterior region of the nasal cavity was overestimated at steady state for ignoring the gravity effects at the beginning and ending of unsteady inhalation. T he results of this paper can be used for both toxicological and therapeutic applications.
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页码:39 / 50
页数:11
相关论文
共 112 条
[1]  
Abouali O.(2012)Micro and nanoparticle deposition in human nasal passage pre and post virtual maxillary sinus endoscopic surgery Resp Physiol Neurobi 181 335-345
[2]  
Keshavarzian E.(2015)Numerical simulation of airflow and micro-particle deposition in human nasal airway pre- and post-virtual sphenoidotomy surgery Comput Biol Med 61 8-18
[3]  
Farhadi Ghalati P.(1996)In vivo measurements of nasal airway dimensions and ultrafine aerosol deposition in the human nasal and oral airways J Aerosol Sci 27 785-801
[4]  
Faramarzi A.(2003)Aerosol deposition in the extrathoracic region Aerosol Sci Tech 37 659-671
[5]  
Ahmadi G.(2001)Characterization of nasal spray pumps and deposition pattern in a replica of the human nasal airway J Aerosol Med 14 267-280
[6]  
Bagheri M. H.(2012)Effects of anatomy and particle size on nasal sprays and nebulizers Otolaryng Head Neck 146 313-319
[7]  
Bahmanzadeh H.(2011)In vitro deposition measurement of inhaled micrometer-sized particles in extrathoracic airways of children and adolescents during nose breathing J Aerosol Sci 42 474-488
[8]  
Abouali O.(1993)Velocity profiles measured for airflow through a large-scale model of the human nasal cavity J Appl Physiol 75 2273-2287
[9]  
Faramarzi M.(2002)The influence of breathing patterns on particle deposition in a nasal replicate cast J Aerosol Sci 33 923-933
[10]  
Ahmadi G.(2011)Numerical simulation of micro-particle deposition in a realistic human upper respiratory tract model during transient breathing cycle Particuology 9 424-431