An investigation of channel flow with a smooth air–water interface

被引:0
|
作者
Reza Madad
John Elsnab
Cheng Chin
Joseph Klewicki
Ivan Marusic
机构
[1] University of Melbourne,Department of Mechanical Engineering
[2] University of New Hampshire,Department of Mechanical Engineering
来源
Experiments in Fluids | 2015年 / 56卷
关键词
Wall Shear Stress; Direct Numerical Simulation; Reynolds Stress; Couette Flow; Laser Doppler Velocimetry;
D O I
暂无
中图分类号
学科分类号
摘要
Experiments and numerical simulation are used to investigate fully developed laminar and turbulent channel flow with an air–water interface as the lower boundary condition. Laser Doppler velocimetry measurements of streamwise and wall-normal velocity components are made over a range of Reynolds number based upon channel height and bulk velocity from 1100 to 4300, which encompasses the laminar, transitional and low Reynolds numbers turbulent regimes. The results show that the airflow statistics near the stationary wall are not significantly altered by the air–water moving interface and reflect those found in channel flows. The mean statistics on the water interface side largely exhibit results similar to simulated Poiseuille–Couette flow (PCF) with a solid moving wall. For second-order statistics, however, the simulation and experimental results show some discrepancies near the moving water surface, suggesting that a full two-phase simulation is required. A momentum and energy transport tubes analysis is investigated for laminar and turbulent PCFs. This analysis builds upon the classical notion of a streamtube and indicates that part of the energy from the pressure gradient is transported towards the stationary wall and is dissipated as heat inside the energy tubes, while the remainder is transmitted to the moving wall. For the experiments, the airflow energy is transmitted towards the water to overcome the drag force and drive the water forward; therefore, the amount of energy transferred to the water is higher than the energy transferred to a solid moving wall.
引用
收藏
相关论文
共 50 条
  • [21] Drying kinetics driven by the shape of the air/water interface in a capillary channel
    Emmanuel Keita
    Stephan A. Koehler
    Paméla Faure
    David A. Weitz
    Philippe Coussot
    The European Physical Journal E, 2016, 39
  • [22] Air-water gas transfer in uniform channel flow
    Moog, DB
    Jirka, GH
    JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 1999, 125 (01): : 3 - 10
  • [23] EXPERIMENTAL INVESTIGATION OF THE FLOW FRONT BEHIND A LIQUID-AIR INTERFACE FOR CAPILLARY FLOW
    Waghmare, Prashant R.
    Sen, Debjyoti
    Nobes, David S.
    Mitra, Sushanta K.
    PROCEEDINGS OF THE ASME 10TH INTERNATIONAL CONFERENCE ON NANOCHANNELS, MICROCHANNELS AND MINICHANNELS 2012, 2012, : 797 - +
  • [24] Investigation of water-water interface in dam break flow with a wet bed
    Ye, Zhouteng
    Zhao, Xizeng
    JOURNAL OF HYDROLOGY, 2017, 548 : 104 - 120
  • [25] Investigation on arrangement and fusion behaviors of gold nanoparticles at the air/water interface
    Pei, Lihua
    Mori, Koichi
    Adachi, Motonari
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2006, 281 (1-3) : 44 - 50
  • [26] Polarisation modulation IRRAS investigation of a cellulose ether at the air/water interface
    Xiao, YF
    Bourque, H
    Pezolet, M
    Ritcey, AM
    THIN SOLID FILMS, 1998, 327 : 299 - 302
  • [27] Structural investigation of sulfobetaines and phospholipid monolayers at the air-water interface
    Elstone, Naomi
    Arnold, Thomas
    Skoda, Maximilian W. A.
    Lewis, Simon E.
    Li, Peixun
    Hazell, Gavin
    Edler, Karen J.
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (37) : 22679 - 22690
  • [28] An experimental investigation of oil-water flow in a serpentine channel
    Der, Oguzhan
    Bertola, Volfango
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2020, 129
  • [29] Computation of water and air flow with submerged hydrofoil by interface capturing method
    Seung-Hyun Kwag
    KSME International Journal, 2000, 14 : 789 - 795
  • [30] An experimental investigation of oil-water flow in a serpentine channel
    Der, Oguzhan
    Bertola, Volfango
    International Journal of Multiphase Flow, 2020, 129