Quasi 3D modeling of water flow in vadose zone and groundwater

被引:29
|
作者
Kuznetsov, M. [2 ]
Yakirevich, A. [2 ]
Pachepsky, Y. A. [1 ]
Sorek, S. [2 ]
Weisbrod, N. [2 ]
机构
[1] USDA ARS, Environm Microbial & Food Safety Lab, Beltsville, MD 20705 USA
[2] Ben Gurion Univ Negev, Zuckerberg Inst Water Res, Dept Environm Hydrol & Microbiol, J Blaustein Inst Desert Res, IL-84105 Beer Sheva, Israel
关键词
Vadose zone; Groundwater; Capillary fringe; Quasi three-dimensional approach; Numerical algorithm; UNSATURATED HYDRAULIC CONDUCTIVITY; EVALUATING INTERACTIONS; COMPUTER-PROGRAM; POROUS-MEDIA; TRANSPORT; EQUATION; MODFLOW; PACKAGE; SURFACE;
D O I
10.1016/j.jhydrol.2012.05.025
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The complexity of subsurface flow systems calls for a variety of concepts leading to the multiplicity of simplified flow models. One habitual simplification is based on the assumption that lateral flow and transport in unsaturated zone are not significant unless the capillary fringe is involved. In such cases the flow and transport in the unsaturated zone above groundwater level can be simulated as a 1D phenomenon, whereas the flow and transport through groundwater are viewed as 2D or 3D phenomena. A new approach for a numerical scheme for 3D variably saturated flow using quasi 3D Richards' equation and finite difference scheme is presented. The corresponding numerical algorithm and the QUASI-3D computer code were developed. Results of the groundwater level simulations were compared with transient laboratory experimental data for 2D data constant-flux infiltration, quasi-3D HYDRUS-MODFLOW numerical model and a FULL-3D numerical model using Richards' equation. Hypothetical 3D examples of infiltration, pumping and groundwater mound dissipation for different spatial-time scales are presented. Water flow simulation for the Alto Piura aquifer (Peru) demonstrates the QUASI-3D model application at the regional scale. Computationally the QUASI-3D code was found to be more efficient by an order of 10-300%, while being accurate with respect to the benchmark fully 3D variable saturation code, when the capillary fringe was considered. Published by Elsevier B.V.
引用
收藏
页码:140 / 149
页数:10
相关论文
共 50 条
  • [1] Quasi 3D modelling of vadose zone soil-water flow for optimizing irrigation strategies: Challenges, uncertainties and efficiencies
    Rezaei, Meisam
    De Pue, Jan
    Seuntjens, Piet
    Joris, Ingeborg
    Cornelis, Wim
    ENVIRONMENTAL MODELLING & SOFTWARE, 2017, 93 : 59 - 77
  • [2] Modeling root water uptake when calculating unsaturated flow in the vadose zone and groundwater recharge
    S. O. Grinevskii
    Moscow University Geology Bulletin, 2011, 66 (3) : 189 - 201
  • [3] Modeling Root Water Uptake When Calculating Unsaturated Flow in the Vadose Zone and Groundwater Recharge
    Grinevskii, S. O.
    MOSCOW UNIVERSITY GEOLOGY BULLETIN, 2011, 66 (03) : 189 - 201
  • [4] Hydraulic modeling of water flow in the thick vadose zone under precipitation
    Wang, Yu
    Li, Tonglu
    Hou, Xiaokun
    Zhang, Yaguo
    Li, Ping
    GEOENVIRONMENTAL DISASTERS, 2022, 9 (01)
  • [5] Hydraulic modeling of water flow in the thick vadose zone under precipitation
    Yu Wang
    Tonglu Li
    Xiaokun Hou
    Yaguo Zhang
    Ping Li
    Geoenvironmental Disasters, 9
  • [6] Water dynamics and groundwater recharge in a deep vadose zone
    Ju, Zhaoqiang
    Li, Xiaoxin
    Hu, Chunsheng
    WATER SCIENCE AND TECHNOLOGY-WATER SUPPLY, 2016, 16 (03): : 579 - 586
  • [7] Structure and parameter schematization of the vadose zone for groundwater recharge modeling
    S. O. Grinevskii
    Moscow University Geology Bulletin, 2010, 65 (6) : 387 - 398
  • [8] Structure and Parameter Schematization of the Vadose Zone for Groundwater Recharge Modeling
    Grinevskii, S. O.
    MOSCOW UNIVERSITY GEOLOGY BULLETIN, 2010, 65 (06) : 387 - 398
  • [9] Effects of Deforestation on Water Flow in the Vadose Zone
    Wiekenkamp, Inge
    Huisman, Johan Alexander
    Bogena, Heye Reemt
    Vereecken, Harry
    WATER, 2020, 12 (01)
  • [10] Quantify the effects of groundwater level recovery on groundwater nitrate dynamics through a quasi-3D integrated model for the vadose zone-groundwater coupled system
    Zang, Yongge
    Hou, Xiaoshu
    Li, Zhiping
    Li, Peng
    Sun, Ying
    Yu, Bowei
    Li, Miao
    WATER RESEARCH, 2022, 226