Investigation of the backflow phenomenon in falling liquid films

被引:83
|
作者
DIETZE, Georg F. [1 ]
Leefken, A. [1 ]
Kneer, R. [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Heat & mass Transfer, D-52056 Aachen, Germany
关键词
D O I
10.1017/S0022112007009378
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The phenomenon of backflow in the capillary wave region of laminar failing liquid films is studied in detail. For the first time, the mechanism leading to the origination of the phenomenon is identified and explained. It is shown that backflow forms as the result of a separation eddy developing at the bounding wall similar to the case of classical flow separation. Results show that the adverse pressure distribution causing the separation of the How in the capillary wave region is induced by the strong third-order deformation (i.e. change in curvature) of the liquid-gas free surface there. This deformation acts on the interfacial pressure jump, and thereby the wall pressure distribution, as a result of surface tension forces. It is shown that only the capillary waves, owing to their short wavelength and large curvature, impose a pressure distribution satisfying the conditions for flow separation. The effect of this capillary separation eddy on momentum and heat transfer is investigated from the perspective of modelling approaches for falling liquid films. The study is centred on a single case of inclined liquid film flow in the visco-capillary regime with surface waves externally excited at a single forcing frequency. Investigations are based on temporally and spatially highly resolved numerical data obtained by solving the Navier-Stokes equations for both phases. Computation of phase distribution is performed with the volume of fluid method and the effect of surface tension is modelled using the continuum surface force approach. Numerical data are compared with experimental data measured in the developed region of the flow. Laser-Doppler velocimetry is used to measure the temporal distribution of the local streamwise velocity component, and confocal chromatic imaging is employed to measure the temporal distribution of film thickness. Excellent agreement is obtained with respect to film thickness and reasonable agreement with respect to velocity.
引用
收藏
页码:435 / 459
页数:25
相关论文
共 50 条
  • [21] Low Kapitza falling liquid films
    Mendez, M. A.
    Scheid, Benoit
    Buchlin, J-M
    CHEMICAL ENGINEERING SCIENCE, 2017, 170 : 122 - 138
  • [22] Backflow phenomenon in converging and diverging channels
    Dinar Zaripov
    Renfu Li
    Alexey Lukyanov
    Artem Skrypnik
    Elizaveta Ivashchenko
    Rustam Mullyadzhanov
    Dmitriy Markovich
    Experiments in Fluids, 2023, 64
  • [23] Backflow phenomenon in converging and diverging channels
    Zaripov, Dinar
    Li, Renfu
    Lukyanov, Alexey
    Skrypnik, Artem
    Ivashchenko, Elizaveta
    Mullyadzhanov, Rustam
    Markovich, Dmitriy
    EXPERIMENTS IN FLUIDS, 2023, 64 (01)
  • [24] Thermocapillary breakdown of subcooled falling liquid films
    Hoke Jr., Bryan C.
    Chen, John C.
    Industrial and Engineering Chemistry Research, 1992, 31 (03): : 688 - 694
  • [25] ON CALCULATION OF EQUIPMENTS WITH FALLING LIQUID-FILMS
    HUHN, J
    CHEMISCHE TECHNIK, 1987, 39 (01): : 11 - 13
  • [26] Extreme solitary waves on falling liquid films
    Chakraborty, S.
    Nguyen, P. -K.
    Ruyer-Quil, C.
    Bontozoglou, V.
    JOURNAL OF FLUID MECHANICS, 2014, 745 : 564 - 591
  • [27] FALLING LIQUID-FILMS IN ABSORPTION MACHINES
    FUJITA, T
    INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 1993, 16 (04): : 282 - 294
  • [28] ANALYSIS OF STAGNANT BAND ON FALLING LIQUID FILMS
    COOK, RA
    CLARK, RH
    INDUSTRIAL & ENGINEERING CHEMISTRY FUNDAMENTALS, 1973, 12 (01): : 106 - 114
  • [29] Heat transfer to turbulent liquid falling films
    Reddy Gorla, Rama Subba, 1600, (04):
  • [30] On Calculation of Equipment with Falling Liquid Films.
    Huhn, Joerg
    Chemische Technik (Leipzig), 1987, 39 (01): : 11 - 13