Numerical modeling of air flow inside the human nose cavity

被引:0
|
作者
Issakhov, A. A. [1 ]
Manapova, A. K. [1 ]
机构
[1] Kazakh British Tech Univ, Alma Ata, Kazakhstan
来源
关键词
system of equations Navier-Stokes; anatomical model of the nose; coronary planes; flow structure; method SIMPL; inhaled air conditioning; NASAL; SIMULATION; DYNAMICS; PATTERNS; GEOMETRY;
D O I
10.26577/ijmph.2021.v12.i1.05
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
The complex structure of the human nasal cavity makes it difficult to study the flow of air in it, therefore, at present, mathematical and computer modeling is used for this purpose. These studies are relevant due to the development of inhalation methods for introducing drugs into the nose, with the help of which operations can be performed. Within the framework of the Navier-Stokes system of equations, temperature and concentration using the ANSYS Fluent application, a three-dimensional test calculation of the air flow in the human nasal cavity was carried out at various modes of inhalation, normal and during exercise. A laminar model was used to close the Navier-Stokes equations, and the SIMPLE method was used to perform the relationship between velocity and pressure. In the graphics package AutoCAD, a geometric three-dimensional model of the nasal cavity was built, reconstructed from images of the nose in coronary sections. As a result of numerical simulation, the fields of velocity, pressure, temperature and concentration were obtained. The results obtained were compared with the experimental data from [10] and the numerical results from [3]. The analysis of these results in terms of the influence of the structure of the nasal cavity on the structure of the flow. The results obtained agree with the experimental data. It was found that the inhaled air is heated and humidified to the state of the nasal tissue, the shells increase the rate of local transfer of heat and moisture by improving mixing and maintaining thin boundary layers, the capacity of a healthy nose exceeds the requirements necessary for conditioning the inhaled air under normal breathing conditions.
引用
收藏
页码:34 / 39
页数:6
相关论文
共 50 条
  • [1] Numerical simulation of air flow in the human nasal cavity
    Wang, Kezhou
    Denney, Thomas S., Jr.
    Morrison, Edward E.
    Vodyanoy, Vitaly J.
    [J]. 2005 27TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-7, 2005, : 5607 - 5610
  • [2] Numerical modeling of the air flow in the human nasal cavity with simulation of application of the clinical method of active anterior rhinomanometry
    V. M. Fomin
    V. L. Ganimedov
    M. N. Mel’nikov
    M. I. Muchnaya
    A. S. Sadovskii
    V. I. Shepelenko
    [J]. Journal of Applied Mechanics and Technical Physics, 2012, 53 : 49 - 55
  • [3] NUMERICAL MODELING OF THE AIR FLOW IN THE HUMAN NASAL CAVITY WITH SIMULATION OF APPLICATION OF THE CLINICAL METHOD OF ACTIVE ANTERIOR RHINOMANOMETRY
    Fomin, V. M.
    Ganimedov, V. L.
    Mel'nikov, M. N.
    Muchnaya, M. I.
    Sadovskii, A. S.
    Shepelenko, V. I.
    [J]. JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2012, 53 (01) : 49 - 55
  • [4] Numerical modeling of an underwater explosion in an air cavity
    P. Z. Lugovoi
    V. P. Mukoid
    [J]. Journal of Applied Mechanics and Technical Physics, 1998, 39 (4) : 508 - 512
  • [5] Air flow in the human nasal cavity
    V. M. Fomin
    V. N. Vetlutsky
    V. L. Ganimedov
    M. I. Muchnaya
    V. N. Shepelenko
    M. N. Melnikov
    A. A. Savina
    [J]. Journal of Applied Mechanics and Technical Physics, 2010, 51 : 233 - 240
  • [6] Air flow in the human nasal cavity
    Fomin, V. M.
    Vetlutsky, V. N.
    Ganimedov, V. L.
    Muchnaya, M. I.
    Shepelenko, V. N.
    Melnikov, M. N.
    Savina, A. A.
    [J]. JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2010, 51 (02) : 233 - 240
  • [7] Numerical study on the movement of air inside the inner cavity of a hovercraft model
    Paval, M. S.
    Popescu, A.
    Popescu, T.
    Zahariea, D.
    Husaru, D. E.
    [J]. 8TH INTERNATIONAL CONFERENCE ON ADVANCED CONCEPTS IN MECHANICAL ENGINEERING, 2018, 444
  • [8] ANALYSIS OF AIR-FLOW PATTERNS IN THE HUMAN NOSE
    ELAD, D
    LIEBENTHAL, R
    WENIG, BL
    EINAV, S
    [J]. MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 1993, 31 (06) : 585 - 592
  • [10] NUMERICAL SIMULATION OF HUMAN AIR BREATHING NEAR THE NOSE OUTLET
    Ma Heng Buji People′s Hospital
    [J]. Journal of Hydrodynamics, 1999, (03) : 105 - 110