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A coupled systems approach to solute transport within a heterogeneous vadose zone-groundwater environment.

机译:一种在异质渗流带-地下水环境中溶质运移的耦合系统方法。

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摘要

A coupled systems approach is presented for the simulation of fluid flow and solute transport within a heterogeneous vadose zone-groundwater environment. Separate model domains were developed for the vadose and saturated zones. The numerical model used is FEMWATER, a three-dimensional (3D) finite element model for simulating flow and transport in variably saturated media. A control plane (CP), normal to the mean flow direction, couples the two systems. The fluid flux and solute mass passing through the CP during a vadose zone simulation is used to construct the recharge boundary condition in the saturated system. Coupling the two systems allows for the accurate representation of flow and transport within the vadose zone while maintaining the ability to simulate regional plume migration in the saturated zone. The coupling approach is referred to as the Recharge Boundary Construction Algorithm (RBCA). The RBCA adaptively reconciles both the spatial and temporal discretization differences between the vadose zone and saturated zone models.; The accuracy of the RBCA is determined by a set of user-defined parameters controlling the algorithm's adaptive spatial mesh and adaptive temporal time step routines. The routines are designed to capture the greatest resolution of spatial and temporal changes in fluid flux across the CP during a vadose zone simulation. A sensitivity analysis performed on the control parameters for the construction of the recharge boundary shows the maximum percent difference in total mass passing through the CP during a vadose zone simulation as having the greatest effect on the boundary's level of resolution. Numerical simulations are made investigating the impact of effluent recharge at the ground surface on the solute temporal (breakthrough) behavior and spatial distribution in the two systems.; The usefulness of the RBCA method is in its ability to accurately describe the groundwater fluxes across the vadose zone-saturated zone interface (a.k.a. the recharge boundary condition). The method is most applicable for modeling the transport of contaminants from sources originating at the ground surface or within the vadose zone, where the potential for aquifer contamination exists. Specific systems that could benefit from the decoupled systems approach include those associated with artificial recharge, aquifer storage and recovery, and disposal of wastes by land or pond application.
机译:提出了一种耦合系统方法,用于模拟非均质渗流带-地下水环境中的流体流动和溶质运移。为渗流区和饱和区开发了单独的模型域。所使用的数值模型是FEMWATER,这是一个三维(3D)有限元模型,用于模拟可变饱和介质中的流动和传输。垂直于平均流向的控制平面(CP)将两个系统耦合在一起。在渗流区模拟过程中,通过CP的流体通量和溶质质量用于构造饱和系统中的补给边界条件。耦合两个系统可以在渗流区内准确表示流量和传输,同时保持模拟饱和区中区域羽流迁移的能力。耦合方法称为补给边界构造算法(RBCA)。 RBCA自适应地协调了渗流带模型和饱和带模型之间的时空离散差异。 RBCA的精度由一组用户定义的参数确定,这些参数控制算法的自适应空间网格和自适应时间时间步长例程。该例程旨在在渗流带模拟过程中捕获通过CP的流体通量的时空变化的最大分辨率。对用于构造补给边界的控制参数进行的敏感性分析显示,在渗流区模拟过程中,通过CP的总质量的最大百分比差异对边界的分辨率水平影响最大。进行了数值模拟,研究了地面补给水对两个系统中溶质的时间(突破)行为和空间分布的影响。 RBCA方法的有用之处在于它能够准确描述穿过渗流带-饱和带界面(又称为补给边界条件)的地下水通量。该方法最适用于模拟来自地下或渗流带内源的污染物的运输,在渗流带中存在含水层污染的可能性。可以从解耦系统方法中受益的特定系统包括与人工补给,含水层存储和回收以及通过土地或池塘施用处理废物相关的系统。

著录项

  • 作者

    Fisher, Jason C.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Civil.; Hydrology.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;水文科学(水界物理学);
  • 关键词

  • 入库时间 2022-08-17 11:42:01

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