Numerical simulation of aerosol deposition in a 3-D human nasal cavity using RANS, RANS/EIM, and LES
Tài liệu tham khảo
Breuer, M., Durmus, G., Matida, E. A., & Finlay, W. H. (2006). LES and an efficient Lagrangian tracking method for predicting aerosol deposition in turbulent flows. In Fifth international symposium on turbulence, heat and mass transfer (THMT-5), Dubrovnik, Croatia, September 25–29.
Cheng, 2003, Aerosol deposition in the extra-thoracic region, Aerosol Science and Technology, 37, 659, 10.1080/02786820300906
Elghobashi, 1994, On predicting particle-laden turbulent flows, Applied Scientific Research, 52, 309, 10.1007/BF00936835
Frey, 2002, Intranasal delivery: Bypassing the blood-brain barrier to deliver therapeutic agents to the brain and spinal cord, Drug Delivery Technology, 2, 46
Giroux, 2005, Controlled particle dispersion: Applying vertical flow to optimize nasal drug deposition, Drug Delivery Technology, 5, 44
Gosman, A. D., & Ioannides, E. (1981). Aspects of computer simulation of liquid-fuelled combustors. AIAA 19th Aerospace Science Meeting, vol. 81.
Graham, 1996, Turbulent dispersion of particles using eddy interaction models, International Journal of Multiphase Flow, 22, 157, 10.1016/0301-9322(95)00061-5
Gray, H. (1918). Anatomy of the human body (20th ed.). Thoroughly revised and re-edited by Warren H. Lewis. 〈http://en.wikipedia.org/wiki/Image:Gray855.png〉.
Hennick, 2000, A comparison of stochastic separated flow models for particle dispersion in turbulent flows, Energy and Fuels, 14, 95, 10.1021/ef990045p
Illum, 2000, Transport of drugs from the nasal cavity to the central nervous system, European Journal of Pharmaceutical Sciences, 11, 1, 10.1016/S0928-0987(00)00087-7
Kelly, 2000, Detailed flow patterns in the nasal cavity, Journal of Applied Physiology, 89, 323, 10.1152/jappl.2000.89.1.323
Keyhani, 1995, Numerical simulation of airflow in the human nasal cavity, Journal of Biomechanical Engineering, 117, 429, 10.1115/1.2794204
Kim, 1998, On the equation for spherical-particle motion: Effect of Reynolds and acceleration numbers, Journal of Fluid Mechanics, 367, 221, 10.1017/S0022112098001657
Kim, 2004, An investigation on airflow in disordered nasal cavity and its corrected models by tomographic PIV, Measurement Science and Technology, 15, 1090, 10.1088/0957-0233/15/6/007
Lilly, D. K. (1966). On the application on the eddy viscosity concept in the inertial sub-range of turbulence. NCAR Manuscript (pp. 195–200).
MacInnes, 1992, Stochastic particle dispersion modelling and the tracer-particle limit, Physics of Fluids A, 4, 2809, 10.1063/1.858337
Marieb, E. N. (1995). Human anatomy and physiology (pp. 744–747). Menco Park, CA: Benjamin/Cummings.
Mathison, 1998, Nasal route for direct delivery of solutes to the central nervous system: Fact or fiction?, Journal of Drug Targeting, 5, 413, 10.3109/10611869808997870
Matida, 2004, Improved numerical simulation of aerosol deposition in an idealized mouth-throat, Journal of Aerosol Science, 35, 1, 10.1016/S0021-8502(03)00381-1
Matida, 2000, Statistical simulation of particle deposition on the wall from turbulent dispersed pipe flow, International Journal of Heat Fluid Flow, 21, 389, 10.1016/S0142-727X(00)00004-7
Maxey, 1983, Equation of motion for a small rigid sphere in a nonuniform flow, Physics of Fluids, 26, 883, 10.1063/1.864230
Mei, 1994, Velocity fidelity of flow tracer particles, Experiments in Fluids, 22, 1, 10.1007/BF01893300
Menter, 1994, Two-equation eddy–viscosity turbulence models for engineering applications, AIAA Journal, 32, 1598, 10.2514/3.12149
Proctor, D. F., & Anderson, I. B. (1982). The nose: Upper airway physiology and the atmospheric environment (pp. 23–43). New York: Elsevier.
Roache, 1997, Quantification of uncertainty in computational fluid dynamics, Annual Review of Fluid Mechanics, 29, 123, 10.1146/annurev.fluid.29.1.123
Robert, 2001, Forced inspiratory nasal flow–volume curves: A simple test of nasal airflow, Mayo Clinic Proceedings, 76, 990, 10.4065/76.10.990
Schroeter, 2006, Analysis of particle deposition in the turbinate and olfactory regions using a human nasal computational fluid dynamics model, Journal of Aerosol Medicine, 19, 301, 10.1089/jam.2006.19.301
Schuen, 1983, Evaluation of a stochastic model of particle dispersion in a turbulent round jet, AIChE Journal, 29, 167, 10.1002/aic.690290127
Scott, 1978, Theoretical study of nasal deposition, Bulletin of Mathematical Biology, 40, 581, 10.1007/BF02460732
Smagorinsky, 1963, General circulation experiments with the primitive equation, Monthly Weather Review, 91, 99, 10.1175/1520-0493(1963)091<0099:GCEWTP>2.3.CO;2
Stern, 2001, Comprehensive approach to verification and validation of CFD simulations-part 1: Methodology and procedures, Journal of Fluids Engineering, 123, 793, 10.1115/1.1412235
Subramaniam, 1998, Computational fluid dynamics simulations of inspiratory airflow in the human nose and nasopharynx, Inhalation Toxicology, 10, 91, 10.1080/089583798197772
Swift, 1996, The anterior human nasal passage as a fibrous filter for particles, Chemical Engineering Communications, 151, 65, 10.1080/00986449608936542
Tang, H., Tu, J. Y., Li, H. F., Au-Hijleh, B., Xue, C. C., & Li, C. G. (2004). Dynamic analysis of airflow features in a 3-D real-anatomical geometry of the human nasal cavity. In 15th Australasian Fluid Mechanics Conference.
Uijttewaal, 1996, Particle dispersion and deposition in direct numerical and large eddy simulations of vertical flows, Physics of Fluids, 8, 2590, 10.1063/1.869046
Wang, 1992, Stochastic trajectory models for turbulent diffusion: Monte Carlo process versus Markov chains, Atmospheric Environment, 26A, 1599, 10.1016/0960-1686(92)90060-X
Wang, 1999, On the effect of anisotropy on the turbulent dispersion and deposition of small particles, International Journal of Multiphase Flow, 25, 551, 10.1016/S0301-9322(98)00053-6
Weinhold, 2004, Numerical simulation of airflow in the human nose, European Archives of Oto-Rhino-Laryngology, 261, 452, 10.1007/s00405-003-0675-y
Yu, 1998, Fluid flow and particle diffusion in the human upper respiratory system, Aerosol Science and Technology, 28, 146, 10.1080/02786829808965517