On the Use of Computational Fluid Dynamics for Simulating Flow and Particle Deposition in the Human Respiratory Tract
- 1 January 1996
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Aerosol Medicine
- Vol. 9 (3) , 329-341
- https://doi.org/10.1089/jam.1996.9.329
Abstract
Computational fluid dynamics (CFD) can produce erroneous results if not used with adequate thought to several issues, some of which are discussed in the present article. Some of these issues are associated with modeling the physics, particularly the turbulence that occurs in the upper airways. For determining the location of deposition of inhaled aerosols, physical models of particle motion must also be specified and various issues associated with such models should be considered. Numerical modeling issues, including grid resolution and numerical boundary condition effects, can also profoundly affect a numerical simulation. The purpose of the present article is to highlight the importance of some of these issues in the context of modeling the fluid dynamics and particle motion in the human respiratory tract, especially for those researchers whose background is not in a discipline normally associated with CFD.Keywords
This publication has 38 references indexed in Scilit:
- Transition to turbulence in constant-mass-flux pipe flowJournal of Fluid Mechanics, 1995
- Gas Transport Processes In Human AirwaysInhalation Toxicology, 1995
- Influences of Cartilaginous Rings on Tracheobronchial Fluid DynamicsInhalation Toxicology, 1994
- Prediction of Turbulent Boundary Layers With a Second-Moment Closure: Part I—Effects of Periodic Pressure Gradient, Wall Transpiration, and Free-Stream TurbulenceJournal of Fluids Engineering, 1993
- The 1991 IGTI Scholar Lecture: The Role of Laminar-Turbulent Transition in Gas Turbine EnginesJournal of Turbomachinery, 1991
- Simulating Boundary Layer Transition With Low-Reynolds-Number k–ε Turbulence Models: Part 2—An Approach to Improving the PredictionsJournal of Turbomachinery, 1991
- Simulating Boundary Layer Transition With Low-Reynolds-Number k–ε Turbulence Models: Part 1—An Evaluation of Prediction CharacteristicsJournal of Turbomachinery, 1991
- Aspects of Computer Simulation of Liquid-Fueled CombustorsJournal of Energy, 1983
- Equation of motion for a small rigid sphere in a nonuniform flowPhysics of Fluids, 1983
- A model study of flow dynamics in human central airways. Part I: Axial velocity profilesRespiration Physiology, 1982