Two-fluid coaxial atomization in a high-pressure environment

被引:0
|
作者
Department of Mechanical Engineering, University of Washington, Seattle [1 ]
WA
98105, United States
机构
来源
关键词
Atomization - Doppler effect - Flow of gases - Gases - Laser Doppler velocimeters - Liquefied gases - Phase interfaces;
D O I
暂无
中图分类号
学科分类号
摘要
We study the dynamics of atomization of a liquid column by a coaxial gas flow with varying gas pressures. Specifically, we analyse how the gas density increase associated with elevated gas pressures in the ambient and co-flowing gas jet influences the liquid destabilization and breakup process, as well as the resulting droplet formation and dispersion. We present new experimental results for a coaxial liquid-gas atomizer operating in a high-pressure environment, with gas-liquid momentum ratio in the range and pressurized gas densities, where is the ambient gas density at standard conditions. High-speed shadowgraphy images are used to quantify the spatially and temporally varying liquid-gas interface in the spray near-field. Liquid core lengths, spreading angles and other spray metrics are presented, and the influence of gas density is identified from the comparison with atomization at atmospheric conditions. In the spray mid-field, phase Doppler interferometry is used in conjunction with laser Doppler velocimetry to quantify the droplet size and velocities, as well as their radial variations across the spray. Results show an increase in droplet size at elevated ambient pressures, when keeping the gas-liquid momentum ratio constant. Finally, we show that these observations are in line with predictions from the Kelvin-Helmholtz and Rayleigh-Taylor instabilities, both of which are relevant to the gas-liquid atomization process. © 2022 The Author(s). Published by Cambridge University Press.
引用
收藏
相关论文
共 50 条
  • [41] MEASUREMENTS IN HIGH-PRESSURE ENVIRONMENT
    LLOYD, EC
    BECKETT, CW
    BOYD, FR
    SCIENCE, 1969, 164 (3881) : 860 - &
  • [42] PE Wax Microparticle Production by External Mixing Two-Fluid Nozzle Atomization Process
    Prasertsit, Kulchanat
    Madua, Ubonwan
    Innachitra, Paiboon
    Keatkhunboot, Tanakorn
    CHIANG MAI JOURNAL OF SCIENCE, 2016, 43 (04): : 818 - 824
  • [43] Experimental Study of Spray Drying and Atomization with a Two-Fluid Nozzle to Produce Inhalable Particles
    Kemp, Ian C.
    Wadley, Robert
    Hartwig, Thoralf
    Cocchini, Ugo
    See-Toh, Yoong
    Gorringe, Lee
    Fordham, Kim
    Ricard, Francois
    DRYING TECHNOLOGY, 2013, 31 (08) : 930 - 941
  • [44] Experimental study of breakup and atomization characteristics of liquid carbon dioxide jet under high-pressure environment
    Hu, Jiaming
    Hu, Chunbo
    Zhu, Xiaofei
    Li, Yue
    Che, Yanhong
    Wei, Ronggang
    Li, Chao
    ACTA ASTRONAUTICA, 2024, 216 : 27 - 36
  • [45] PRODUCTION OF ULTRAFINE ALUMINUM POWDER BY HIGH-PRESSURE GAS ATOMIZATION
    RICKS, RA
    ADKINS, NJE
    CLYNE, TW
    POWDER METALLURGY, 1986, 29 (01) : 27 - 32
  • [46] High-pressure spray atomization of Pd-Rh powders
    Yang, N.
    Guthrie, S.E.
    Ho, S.
    Lavernia, E.J.
    Journal of Materials Synthesis and Processing, 1996, 4 (01): : 15 - 22
  • [47] Synchrotron radiography characterization of the liquid core dynamics in a canonical two-fluid coaxial atomizer
    Machicoane, Nathanael
    Bothell, Julie K.
    Li, Danyu
    Morgan, Timothy B.
    Heindel, Theodore J.
    Kastengren, Alan L.
    Aliseda, Alberto
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2019, 115 : 1 - 8
  • [48] INFLUENCE OF REACTOR PRESSURE ON TWIN-FLUID ATOMIZATION: BASIC INVESTIGATIONS ON BURNER DESIGN FOR HIGH-PRESSURE ENTRAINED FLOW GASIFIER
    Jakobs, T.
    Djordjevic, N.
    Saenger, A.
    Zarzalis, N.
    Kolb, T.
    ATOMIZATION AND SPRAYS, 2015, 25 (12) : 1081 - 1105
  • [49] A Numerical Study of Two-Fluid Models with Pressure and Velocity Relaxation
    Munkejord, Svend Tollak
    ADVANCES IN APPLIED MATHEMATICS AND MECHANICS, 2010, 2 (02) : 131 - 159
  • [50] ATOMIZATION OF MOLTEN MATERIALS FOR PARTICLE COATING: PREDICTION OF MEAN DROPLET SIZE FOR TWO-FLUID NOZZLES
    Pacheco, Consuelo
    Pina, Juliana
    Saleh, Khashayar
    ATOMIZATION AND SPRAYS, 2016, 26 (10) : 1031 - 1050