Modelling suspended sediment in environmental turbulent fluids

被引:0
|
作者
Meng Cao
A. J. Roberts
机构
[1] University of Adelaide,School of Mathematical Sciences
来源
关键词
Centre manifold; Sediment transport; Smagorinski; Turbulent fluids; 35Q30; 35Q35; 65M06; 76B15; 76F20; 76F25;
D O I
暂无
中图分类号
学科分类号
摘要
Modelling sediment transport in environmental turbulent fluids is a challenge. This article develops a model of the longitudinal transport of suspended sediment in environmental fluid flows such as floods and tsunamis. The model is systematically derived from a three-dimensional turbulence model based on the Smagorinski large eddy closure. Embedding the physical dynamics into a family of problems and analysing the linear dynamics of the system, the centre manifold theory indicates the existence of a slow manifold parameterised by macroscale variables. Computer algebra then constructs the slow manifold in terms of fluid depth, depth-averaged longitudinal velocities, and suspended sediment concentration. The model includes the effects of sediment erosion, advection and dispersion and the interactions between the sediment and turbulent fluid flow. Vertical distributions of the velocity and concentration in steady flow agree with established experimental data. For a pilot study, numerical simulations of the suspended sediment under long waves show that the developed model predicts physically reasonable sediment flow interaction.
引用
收藏
页码:187 / 204
页数:17
相关论文
共 50 条
  • [21] Fluctuations of suspended sediment concentration and turbulent sediment fluxes in an open-channel flow
    Nikora, VI
    Goring, DG
    JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 2002, 128 (02): : 214 - 224
  • [22] Numerical modelling of the suspended sediment transport in Torres Strait
    Margvelashvili, N.
    Saint-Cast, F.
    Condie, S.
    CONTINENTAL SHELF RESEARCH, 2008, 28 (16) : 2241 - 2256
  • [23] Suspended sediment modelling with hydrological and climate input data
    Cisty, Milan
    Soldanova, Veronika
    Cyprich, Frantisek
    Holubova, Katarina
    Simor, Viliam
    JOURNAL OF HYDROINFORMATICS, 2021, 23 (01) : 192 - 210
  • [24] Review of Suspended Sediment Transport Mathematical Modelling Studies
    Wallwork, Joseph T.
    Pu, Jaan H.
    Kundu, Snehasis
    Hanmaiahgari, Prashanth R.
    Pandey, Manish
    Satyanaga, Alfrendo
    Khan, Md. Amir
    Wood, Alastair
    FLUIDS, 2022, 7 (01)
  • [25] Suspended sediment modelling in a shelf sea (North Sea)
    Gerritsen, H
    Vos, RJ
    van der Kaaij, T
    Lane, A
    Boon, JG
    COASTAL ENGINEERING, 2000, 41 (1-3) : 317 - 352
  • [26] Effect of settling velocity on the modelling of suspended sediment transport
    Portela, LI
    COMPUTER MODELLING OF SEAS AND COASTAL REGIONS III - COASTAL 97, 1997, : 381 - 390
  • [27] Modelling of suspended sediment - In Nile river using ANN
    Negm, Abdelazim M.
    Elfiky, M. M.
    Owais, T. M.
    Nassar, M. H.
    ICSOFT 2007: PROCEEDINGS OF THE SECOND INTERNATIONAL CONFERENCE ON SOFTWARE AND DATA TECHNOLOGIES, VOL ISDM/WSEHST/DC, 2007, : 209 - 214
  • [28] Detailed measurements of suspended sediment transport in a turbulent open channel flow
    Breugern, W. A.
    Uijttewaal, W. S. J.
    RIVER, COASTAL AND ESTUARINE MORPHODYNAMICS: RCEM 2007, VOLS 1 AND 2, 2008, : 499 - 506
  • [29] Hydrodynamic interaction in suspended sediment distribution of open channel turbulent flow
    Pal, Debasish
    Ghoshal, Koeli
    APPLIED MATHEMATICAL MODELLING, 2017, 49 : 630 - 646
  • [30] Turbulent bursting-based formulation of suspended sediment transport capacity
    Cao, ZX
    ENVIRONMENTAL AND COASTAL HYDRAULICS: PROTECTING THE AQUATIC HABITAT, PROCEEDINGS OF THEME B, VOLS 1 & 2, 1997, 27 : 1215 - 1220