Diffusion-dispersion numerical discretization for solute transport in 2D transient shallow flows

被引:18
|
作者
Morales-Hernandez, M. [1 ,2 ]
Murillo, J. [1 ]
Garcia-Navarro, P. [1 ]
机构
[1] Univ Zaragoza, CSIC, LIFTEC EINA, Fluid Mech, Zaragoza, Spain
[2] CSIC, EEAD, Soil & Water, Zaragoza, Spain
关键词
Solute transport; Diffusion-dispersion discretization; Shallow flows; Laboratory experiment; Mixing; SOURCE TERMS; WATER; COEFFICIENTS; SIMULATION; RESOLUTION; EQUATIONS; SCHEMES;
D O I
10.1007/s10652-018-9644-2
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The 2D solute transport equation can be incorporated into the 2D shallow water equations in order to solve both flow and solute interactions in a coupled system of equations. In order to solve this system, an explicit finite volume scheme based on Roe's linearization is proposed. Moreover, it is feasible to decouple the solute transport equation from the hydrodynamic system in a conservative way. In this case, the advection part is solved in essence defining a numerical flux, allowing the use of higher order numerical schemes. However, the discretization of the diffusion-dispersion terms have to be carefully analysed. In particular, time-step restrictions linked to the nature of the solute equation itself as well as the numerical diffusion associated to the numerical scheme used are question of interest in this work. These improvements are tested in an analytical case as well as in a laboratory test case with a passive solute (fluorescein) released from a reservoir. Experimental measurements are compared against the numerical results obtained with the proposed model and a sensitivity analysis is carried out, confirming an agreement with the longitudinal coefficients and an underestimation of the transversal ones, respectively.
引用
收藏
页码:1217 / 1234
页数:18
相关论文
共 50 条
  • [21] Numerical treatment of a discontinuous top surface in 2D shallow water mixed flow modeling
    Maranzoni, A.
    Mignosa, P.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2018, 86 (04) : 290 - 311
  • [22] Unified 2D numerical modelling of flows on ogee crest spillways
    Dewals, Benjamin J.
    Erpicum, Sebastien
    Archambeau, Pierre
    Pirotton, Michel
    HOUILLE BLANCHE-REVUE INTERNATIONALE DE L EAU, 2010, (06): : 102 - 108
  • [23] Simulation and analysis of solute transport in 2D fracture/pipe networks: The SOLFRAC program
    Bodin, Jacques
    Porel, Gilles
    Delay, Fred
    Ubertosi, Fabrice
    Bernard, Stephane
    de Dreuzy, Jean-Raynald
    JOURNAL OF CONTAMINANT HYDROLOGY, 2007, 89 (1-2) : 1 - 28
  • [24] A conservative 2D model of inundation flow with solute transport over dry bed
    Murillo, J.
    Garcia-Navarro, P.
    Burguete, J.
    Brufau, P.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2006, 52 (10) : 1059 - 1092
  • [25] Historical overview of 2D and 3D hydrodynamic modelling of shallow water flows in the Netherlands
    De Goede, Erik D.
    OCEAN DYNAMICS, 2020, 70 (04) : 521 - 539
  • [26] A hybrid transport-diffusion method for 2D transport problems with diffusive subdomains
    Stehle, Nicholas D.
    Anistratov, Dmitriy Y.
    Adams, Marvin L.
    JOURNAL OF COMPUTATIONAL PHYSICS, 2014, 270 : 325 - 344
  • [27] A 2D transient numerical model combining heat/mass transport effects in a tubular solid oxide fuel cell
    Barzi, Y. Mollayi
    Ghassemi, M.
    Hamedi, M. H.
    JOURNAL OF POWER SOURCES, 2009, 192 (01) : 200 - 207
  • [28] Finite volumes for 2D shallow-water flow with bed-load transport on unstructured grids
    Serrano-Pacheco, Alberto
    Murillo, Javier
    Garcia-Navarro, Pilar
    JOURNAL OF HYDRAULIC RESEARCH, 2012, 50 (02) : 154 - 163
  • [29] Understanding the Non-Gaussian Nature of Linear Reactive Solute Transport in 1D and 2D
    Uffink, Gerard
    Elfeki, Amro
    Dekking, Michel
    Bruining, Johannes
    Kraaikamp, Cor
    TRANSPORT IN POROUS MEDIA, 2012, 91 (02) : 547 - 571
  • [30] Adaptation of flux-based solvers to 2D two-layer shallow flows with variable density including numerical treatment of the loss of hyperbolicity and drying/wetting fronts
    Murillo, J.
    Martinez-Aranda, S.
    Navas-Montilla, A.
    Garcia-Navarro, P.
    JOURNAL OF HYDROINFORMATICS, 2020, 22 (05) : 972 - 1014