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PMID: 25108178 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Numerical study of wave effects on groundwater flow and solute transport in a laboratory beach.

Journal of contaminant hydrology ·Vol. 165 ·2014-09-00 ·页码 37-52

Geng X, Boufadel MC, Xia Y, Li H, Zhao L, Jackson NL, Miller RS

Abstract

A numerical study was undertaken to investigate the effects of waves on groundwater flow and associated inland-released solute transport based on tracer experiments in a laboratory beach. The MARUN model was used to simulate the density-dependent groundwater flow and subsurface solute transport in the saturated and unsaturated regions of the beach subjected to waves. The Computational Fluid Dynamics (CFD) software, Fluent, was used to simulate waves, which were the seaward boundary condition for MARUN. A no-wave case was also simulated for comparison. Simulation results matched the observed water table and concentration at numerous locations. The results revealed that waves generated seawater-groundwater circulations in the swash and surf zones of the beach, which induced a large seawater-groundwater exchange across the beach face. In comparison to the no-wave case, waves significantly increased the residence time and spreading of inland-applied solutes in the beach. Waves also altered solute pathways and shifted the solute discharge zone further seaward. Residence Time Maps (RTM) revealed that the wave-induced residence time of the inland-applied solutes was largest near the solute exit zone to the sea. Sensitivity analyses suggested that the change in the permeability in the beach altered solute transport properties in a nonlinear way. Due to the slow movement of solutes in the unsaturated zone, the mass of the solute in the unsaturated zone, which reached up to 10% of the total mass in some cases, constituted a continuous slow release of solutes to the saturated zone of the beach. This means of control was not addressed in prior studies.

Keywords
Groundwater flow Laboratory beach MARUN numerical model Tracer Waves
MeSH 主题词
Bathing Beaches Environmental Monitoring Groundwater/analysis Hydrodynamics Models, Theoretical Seawater/analysis Silicon Dioxide/chemistry Solutions/analysis Water Movements Water Pollutants, Chemical/analysis
化学物质
Solutions Water Pollutants, Chemical Silicon Dioxide
作者与单位
共 7 位作者,点击展开单位 / ORCID
Geng Xiaolong
Center for Natural Resources Development and Protection, Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, NJ 07102, United States.
Boufadel Michel C
Center for Natural Resources Development and Protection, Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, NJ 07102, United States. Electronic address: [email protected].
Xia Yuqiang
Changjiang River Scientific Research Institute (CRSRI), Changjiang Water Resources Commission of MWR, Wuhan 430010, China.
Li Hailong
School of Water Resources and Environmental Science, China University of Geoscience-Beijing, Beijing 100083, China.
Zhao Lin
Center for Natural Resources Development and Protection, Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, NJ 07102, United States.
Jackson Nancy L
Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, NJ 07102, United States.
Miller Richard S
Department of Mechanical Engineering, Clemson University, Clemson, SC 29634-0921, United States.
Article Info
Journal
Journal of contaminant hydrology
Abbr.
J Contam Hydrol
ISSN
1873-6009
Corresponding email
Published
2014-09-00
电子出版
2014-00-08
页码
37-52
Language
English
Country/Region
Netherlands
NLM ID
8805644
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