Influence of Regular Surface Waves on the Propagation of Gravity Currents: Experimental and Numerical Modeling

被引:13
|
作者
Musumeci, Rosaria E. [1 ]
Viviano, Antonino [1 ]
Foti, Enrico [1 ]
机构
[1] Univ Catania, Dept Civil Engn & Architecture, Via S Sofia 64, I-95123 Catania, Italy
关键词
Gravity currents; Waves; Lock exchange; Numerical model; Experiments; SHALLOW-WATER MODEL; CURRENT HEAD; PART; SIMULATION; FLOW; DYNAMICS;
D O I
10.1061/(ASCE)HY.1943-7900.0001308
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The propagation of gravity currents is analyzed in the presence of regular surface waves, both experimentally and numerically, by using a full-depth lock-exchange configuration. Full-depth lock-exchange releases have been reproduced in a wave flume, both in the absence and in the presence of regular waves, considering two fluids having densities 0 and 1, with 0<1. Boussinesq gravity currents have been considered here (0/1 approximate to 1), with values of the reduced gravity g in the range 0.01-0.1m/s2, while monochromatic waves have been generated in intermediate water depth. The experimental results show that the hydrodynamics of the density current are significantly affected by the presence of the wave motion. In particular, the front shows a pulsating behavior and the shape of the front itself is less steep than in the absence of waves, while turbulence at the interface between the two fluids is damped out. In the present test conditions, the average velocity of the advancing front may be decreased in the presence of the combined flow as a function of the relative importance of buoyancy compared with wave-induced Stokes drift. Moreover, a new numerical model is proposed, aiming at obtaining a simple, efficient, and accurate tool to simulate the combined motion of gravity currents and surface waves. The model is derived by assuming that surface waves are not affected by gravity current propagation at the leading order and that the total velocity field is the sum of velocities forced by the orbital motion and those forced by buoyancy. A Boussinesq-type wave model for nonstratified fluids is solved, and its results are used as input of a gravity current model for stratified flows. Comparisons of the numerical results with the present experimental data demonstrate the capability of the model to predict the main features of the analyzed phenomena concerning propagation of the density current (e.g.,averaged velocities, front height), the increase of entrainment of the ambient fluid into the density current in the presence of the waves, and the intrawave pulsating movement of the heavy front.
引用
收藏
页数:21
相关论文
共 50 条
  • [1] EXPERIMENTAL AND NUMERICAL SIMULATIONS OF 3D GRAVITY CURRENTS
    Lombardi, Valentina
    Adduce, Claudia
    La Rocca, Michele
    Morganti, Mario
    PROCEEDINGS OF THE 36TH IAHR WORLD CONGRESS: DELTAS OF THE FUTURE AND WHAT HAPPENS UPSTREAM, 2015, : 4295 - 4303
  • [2] Numerical modeling of gravity currents in inclined channels
    Safrai, A. S.
    Tkachenko, I. V.
    FLUID DYNAMICS, 2009, 44 (01) : 22 - 30
  • [3] Non-Boussinesq gravity currents and surface waves generated by lock release in a circular-section channel: theoretical and experimental investigation
    Chiapponi, L.
    Ungarish, M.
    Petrolo, D.
    Di Federico, V
    Longo, S.
    JOURNAL OF FLUID MECHANICS, 2019, 869 : 610 - 633
  • [4] Interaction between waves and gravity currents: description of turbulence in a simple numerical model
    Viviano, Antonino
    Musumeci, Rosaria E.
    Foti, Enrico
    ENVIRONMENTAL FLUID MECHANICS, 2018, 18 (01) : 117 - 148
  • [5] Dynamics of Gravity Currents in the Presence of Surface Waves
    Stancanelli, L. M.
    Musumeci, R. E.
    Foti, E.
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2018, 123 (03) : 2254 - 2273
  • [6] Numerical modeling of gravity currents in inclined channels
    A. S. Safrai
    I. V. Tkachenko
    Fluid Dynamics, 2009, 44 : 22 - 30
  • [7] Numerical modeling of the propagation of nonlinear acoustic-gravity waves in the middle and upper atmosphere
    Gavrilov, N. M.
    Kshevetskii, S. P.
    IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS, 2014, 50 (01) : 66 - 72
  • [8] Experimental and numerical study of regular waves past a submerged breakwater
    Liu, Bi-jin
    Cheng, Du
    Sun, Zhao-chen
    Zhao, Xi-zeng
    Chen, Yong
    Lin, Wei-dong
    JOURNAL OF HYDRODYNAMICS, 2019, 31 (04) : 641 - 653
  • [9] Numerical Modeling of the Propagation of Infrasonic Acoustic Waves Through the Turbulent field Generated by the Breaking of Mountain Gravity Waves
    Sabatini, R.
    Snively, J. B.
    Bailly, C.
    Hickey, M. P.
    Garrison, J. L.
    GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (10) : 5526 - 5534
  • [10] Numerical modeling of lock-exchange gravity/turbidity currents by a high-order upwinding combined compact difference scheme
    Zhao, Liang
    Yu, Ching-Hao
    He, Zhiguo
    INTERNATIONAL JOURNAL OF SEDIMENT RESEARCH, 2019, 34 (03) : 240 - 250