Improved numerical modelling of estuarine flows

被引:20
|
作者
Liang, D [1 ]
Falconer, RA [1 ]
Lin, B [1 ]
机构
[1] Cardiff Univ, Cardiff Sch Engn, Hydroenvironm Res Ctr, Cardiff, Wales
关键词
hydraulics & hydrodynamics; mathematical modeling;
D O I
10.1680/maen.2006.159.1.25
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Three key improvements to a widely used numerical model for predicting depth-averaged shallow water flows in estuarine and coastal waters are outlined herein. They include the adoption of a new grid layout for calculating friction and viscosity, a new method for simulating flooding and drying processes and a better representation of irregular wall boundaries. Although these improvements are currently implemented in the Depth Integrated Velocities And Solute Transport (DIVAST) model, they can easily be extended to other numerical models in the framework of a finite-difference or finite-volume method on a space-staggered rectangular grid system. Much effort has been made to keep the improvements simple and efficient so that they can be used in long-term and large-area simulations of estuarine and coastal flows. Numerical tests have been undertaken to verify the performance of these refinements for idealised bed forms, different beach configurations and irregular shoreline boundaries. The results show that for all conditions these refinements produce either the same or better results than the original model. Finally, the refined numerical model was used to simulate the tidal flow in a natural coastal basin. On the whole, the predicted variations in the inundation areas and the velocity fields were reproduced more accurately for different stages of the tide. At field measurement sites, the predicted water levels and velocities agreed favourably with the measured data.
引用
收藏
页码:25 / 35
页数:11
相关论文
共 50 条
  • [11] Numerical modelling of multiple-jet flows
    A.Lykov Inst. Heat and Mass Exch., Academy of Sciences of Belarus', Minsk, Belarus
    Chemical Physics Reports, 2001, 19 (01): : 47 - 54
  • [12] Peculiarities of the numerical modelling of discontinuous MHD flows
    Pogorelov, NV
    Semenov, AY
    NUMERICAL METHODS IN ENGINEERING '96, 1996, : 1022 - 1028
  • [13] Numerical modelling of mixed flows in hydroelectric schemes
    Blais, Jean-Pierre
    Del Gatto, Laurent
    Bourdarias, Christian
    Gerbi, Stephane
    HOUILLE BLANCHE-REVUE INTERNATIONALE DE L EAU, 2006, (01): : 76 - +
  • [14] Numerical modelling of granular flows: a reality check
    C. R. K. Windows-Yule
    D. R. Tunuguntla
    D. J. Parker
    Computational Particle Mechanics, 2016, 3 : 311 - 332
  • [15] Three dimensional numerical modelling for turbulent flows
    Li, Jia
    Chengdu Kejidaxue Xuebao/Journal of Chengdu University of Science and Technology, 1992, (06):
  • [16] Numerical modelling of granular flows: a reality check
    Windows-Yule, C. R. K.
    Tunuguntla, D. R.
    Parker, D. J.
    COMPUTATIONAL PARTICLE MECHANICS, 2016, 3 (03) : 311 - 332
  • [17] The numerical modelling of MHD astrophysical flows with chemistry
    Kulikov, I.
    Chernykh, I.
    Protasov, V.
    ALL-RUSSIAN CONFERENCE WITH INTERNATIONAL PARTICIPATION MODERN PROBLEMS OF CONTINUUM MECHANICS AND EXPLOSION PHYSICS DEDICATED TO THE 60TH ANNIVERSARY OF LAVRENTYEV INSTITUTE OF HYDRODYNAMICS SB RAS, 2017, 894
  • [18] Recent advances on the numerical modelling of turbulent flows
    Argyropoulos, C. D.
    Markatos, N. C.
    APPLIED MATHEMATICAL MODELLING, 2015, 39 (02) : 693 - 732
  • [19] Numerical modelling of the MHD interaction in hypersonic flows
    Borghi, CA
    Carraro, MR
    Cristofolini, A
    2002 37TH INTERSOCIETY ENERGY CONVERSION ENGINEERING CONFERENCE (IECEC), 2002, : 480 - 484
  • [20] Numerical modelling of slag flows in an electric furnace
    Xia, JL
    Ahokainen, T
    SCANDINAVIAN JOURNAL OF METALLURGY, 2004, 33 (04) : 220 - 228