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Two-dimensional stable-layered laboratory-scale experiments for testing density-coupled flow models

机译:用于测试密度耦合流模型的二维稳定层实验室规模实验

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摘要

A series of laboratory-scale two-dimensional porous medium tank experiments was conducted to study stable-layered variable density flow problems using well-defined experimental parameters and boundary conditions. The experiments were carried out both in a rectangular flow tank and in a more complex geometrical setup aimed at studying variable density flow in geometries similar to geological formations of aquifers and aquicludes connected via fault zones. An impermeable layer within the porous medium tank forced the solutes to pass through a vertical channel, representing a geological fault zone, to reach the outlet of the tank. Flow through the porous medium occurred through a single inflow opening and an outflow opening on the opposite edge of the domain. An image analysis technique delivered 2%, 10%, 50%, and 80% salt concentration isolines at distinct times. Breakthrough curves of the dyed saltwater with an initial density of 1063 g/L were available at any location within the tank. The experimental data are presented as benchmark problems to evaluate numerical codes. A numerical model based on mixed finite elements for the fluid flow problem and a combination of discontinuous Galerkin finite element and multipoint flux approximation methods for the transport turned out to be adequate for the simulation of the physical experiments. The high data availability makes the proposed benchmark experiments a valuable tool for assessing the performance of density-coupled flow models.
机译:进行了一系列实验室规模的二维多孔介质罐实验,以使用定义明确的实验参数和边界条件研究稳定层的可变密度流动问题。实验是在矩形流量罐和更复杂的几何结构中进行的,旨在研究类似于断层带连接的含水层和含水层的地质构造的几何形状中的可变密度流。多孔介质罐内的不可渗透层迫使溶质穿过代表地质断层带的垂直通道,到达罐的出口。通过多孔介质的流动是通过在畴的相对边缘上的单个流入开口和流出开口发生的。图像分析技术在不同的时间输送了2%,10%,50%和80%的盐浓度等值线。罐内任何位置均可获得初始密度为1063 g / L的染色盐水的穿透曲线。实验数据作为评估数字代码的基准问题。事实证明,基于混合有限元的流体流动数值模型以及不连续的Galerkin有限元与多点通量近似方法相结合的输运数值模型足以用于物理实验的仿真。高数据可用性使建议的基准实验成为评估密度耦合流模型性能的有价值的工具。

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  • 来源
    《Water resources research》 |2009年第2期|56-69|共14页
  • 作者单位

    Department of Environmental Sciences, Institute of Geology, Applied and Environmental Geology, University of Basel, Basel, Switzerland;

    Mechanical Institute of Fluids and Solids, Louis Pasteur University, CNRS, UMR, Strasbourg, France;

    Mechanical Institute of Fluids and Solids, Louis Pasteur University, CNRS, UMR, Strasbourg, France;

    Department of Environmental Sciences, Institute of Geology, Applied and Environmental Geology, University of Basel, Basel, Switzerland;

    Department of Environmental Sciences, Institute of Geology, Applied and Environmental Geology, University of Basel, Basel, Switzerland;

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