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PMID: 33575958 Published · ppublish English Journal Article

On the Use of Computational Fluid Dynamics (CFD) Modelling to Design Improved Dry Powder Inhalers.

Pharmaceutical research ·Vol. 38 ·No. 2 ·2021-02-00 ·页码 277-288

Fletcher DF, Chaugule V, Gomes Dos Reis L, Young PM, Traini D, Soria J

Abstract

Computational Fluid Dynamics (CFD) simulations are performed to investigate the impact of adding a grid to a two-inlet dry powder inhaler (DPI). The purpose of the paper is to show the importance of the correct choice of closure model and modeling approach, as well as to perform validation against particle dispersion data obtained from in-vitro studies and flow velocity data obtained from particle image velocimetry (PIV) experiments. CFD simulations are performed using the Ansys Fluent 2020R1 software package. Two RANS turbulence models (realisable k - ε and k - ω SST) and the Stress Blended Eddy Simulation (SBES) models are considered. Lagrangian particle tracking for both carrier and fine particles is also performed. Excellent comparison with the PIV data is found for the SBES approach and the particle tracking data are consistent with the dispersion results, given the simplicity of the assumptions made. This work shows the importance of selecting the correct turbulence modelling approach and boundary conditions to obtain good agreement with PIV data for the flow-field exiting the device. With this validated, the model can be used with much higher confidence to explore the fluid and particle dynamics within the device.

Keywords
CFD SBES dry powder inhaler particle tracking turbulence models
MeSH 主题词
Administration, Inhalation Aerosols/chemistry Chemistry, Pharmaceutical Computer Simulation Dry Powder Inhalers Equipment Design Hydrodynamics Models, Chemical Particle Size Powders/chemistry Rheology
化学物质
Aerosols Powders
作者与单位
共 6 位作者,点击展开单位 / ORCID
Fletcher David F ORCID
School of Chemical and Biomolecular Engineering, The University of Sydney, Sydney, Australia.
Chaugule Vishal ORCID
Laboratory for Turbulence Research in Aerospace and Combustion (LTRAC), Department of Mechanical and Aerospace Engineering, Monash University, Clayton Campus, Melbourne, Australia. [email protected].
Gomes Dos Reis Larissa ORCID
Respiratory Technology, Woolcock Institute of Medical Research and Discipline of Pharmacology, Faculty of Medicine and Health, The University of Sydney, Sydney, Australia.
Young Paul M
Respiratory Technology, Woolcock Institute of Medical Research and Discipline of Pharmacology, Faculty of Medicine and Health, The University of Sydney, Sydney, Australia.
Traini Daniela ORCID
Respiratory Technology, Woolcock Institute of Medical Research and Discipline of Pharmacology, Faculty of Medicine and Health, The University of Sydney, Sydney, Australia.
Soria Julio ORCID
Laboratory for Turbulence Research in Aerospace and Combustion (LTRAC), Department of Mechanical and Aerospace Engineering, Monash University, Clayton Campus, Melbourne, Australia.
Article Info
Journal
Pharmaceutical research
Abbr.
Pharm Res
ISSN
1573-904X
Corresponding email
Published
2021-02-00
电子出版
2021-00-11
页码
277-288
Language
English
Country/Region
United States
NLM ID
8406521
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