Size effect on gas flow in micro nozzles

被引:51
|
作者
Hao, PF [1 ]
Ding, YT [1 ]
Yao, ZH [1 ]
He, F [1 ]
Zhu, KQ [1 ]
机构
[1] Tsing Hua Univ, Dept Engn Mech, Beijing 100084, Peoples R China
关键词
D O I
10.1088/0960-1317/15/11/011
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The performance of a micro propulsion system is determined primarily by the performance of the micro nozzles. A rectangular cross-section convergent-divergent micro nozzle, with a throat width of 20 mu m and an expansion area ratio of 1.7, is fabricated and studied using experiment and numerical simulation. Experiments are conducted to measure the mass flow rates and pressure distributions near the nozzle's throat under various outlet pressures. The results of the numerical simulations accord with the experimental data. Moreover, differences between the micro scale flow and the conventional scale flow are discovered from the simulation results. The Mach number near the downstream position of the micro nozzle's throat is lower than that in the conventional nozzle. In the divergent region of the micro nozzle, there is a supersonic area instead of the shock wave that usually occurs in the conventional scale nozzles. The results of the numerical simulation also show that the position of the sonic point moves away from the throat towards the outlet with the decrease in the size of the nozzle. This particular behavior is attributed to the higher viscous dissipation in micro nozzles as compared to that in the conventional scale nozzles.
引用
收藏
页码:2069 / 2073
页数:5
相关论文
共 50 条
  • [21] Study of subsonic-supersonic gas flow through micro/nanoscale nozzles using unstructured DSMC solver
    Darbandi, Masoud
    Roohi, Ehsan
    MICROFLUIDICS AND NANOFLUIDICS, 2011, 10 (02) : 321 - 335
  • [22] A study on gas flow behaviour from two nozzles
    Luo, GH
    Zhang, JY
    Zhang, BJ
    '96 CHINA-JAPAN SYMPOSIUM ON PARTICUOLOGY, PROCEEDINGS, 1996, : 267 - 272
  • [23] STUDY OF GAS-FLOW STABILITY IN NOZZLES AND DIFFUSERS
    KULMIN, AG
    USSR COMPUTATIONAL MATHEMATICS AND MATHEMATICAL PHYSICS, 1989, 29 (05): : 66 - 75
  • [24] Electroosmotic flow and particle transport in micro/nano nozzles and diffusers
    Lei Chen
    A. T. Conlisk
    Biomedical Microdevices, 2008, 10 : 289 - 298
  • [25] Modeling of gas powder flow in nozzles of gunned lance
    Kharin, A.K.
    Kharlashin, P.S.
    Metallurgical and Mining Industry, 2010, 2 (03): : 242 - 246
  • [26] Effect of Particle Finite Size on Gas Turbulent Flow
    Zeng, Zhuoxiong
    Wang, Zhangjun
    Yu, Yunni
    ELECTRICAL POWER & ENERGY SYSTEMS, PTS 1 AND 2, 2012, 516-517 : 752 - +
  • [27] Numerical Analysis of Effect of the Number of Nozzles on Water Mist Flow Field for Gas Explosion Suppression
    Meng, Fanmao
    Liu, Zhichao
    ADVANCED MEASUREMENT AND TEST, PTS 1-3, 2011, 301-303 : 478 - 482
  • [28] Three-dimensional effect of gas flow in micro channels
    Wang, Mo-Ran
    Li, Zhi-Xin
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2004, 25 (05): : 840 - 842
  • [29] Hybrid simulations of rarefied supersonic gas flows in micro-nozzles
    La Torre, F.
    Kenjeres, S.
    Moerel, J. -L.
    Kleijn, C. R.
    COMPUTERS & FLUIDS, 2011, 49 (01) : 312 - 322
  • [30] Gas flows in radial micro-nozzles with pseudo-shocks
    S. P. Kiselev
    V. P. Kiselev
    V. N. Zaikovskii
    Shock Waves, 2018, 28 : 829 - 849