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首页> 外文期刊>Water resources research >Adaptive Multirate Mass Transfer (aMMT) Model: A New Approach to Upscale Regional-Scale Transport Under Transient Flow Conditions
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Adaptive Multirate Mass Transfer (aMMT) Model: A New Approach to Upscale Regional-Scale Transport Under Transient Flow Conditions

机译:自适应多型传统转移(AMMT)模型:瞬态流动条件下的高档区域规模运输方法

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摘要

The long-term evaluation of regional-scale groundwater quality needs efficient upscaling methods for transient flow. Upscaling techniques, such as the Multirate Mass Transfer (MRMT) method with constant upscaling parameters, have been used for transport with steady-state flow, yet the upscaling parameters (i.e., rate coefficients) may be time dependent. This study proposed and validated an adaptive MRMT (aMMT) method by allowing the mass transfer coefficients in MRMT to change with the flow field. Advective-dispersive contaminant transport simulated in a 3-D heterogeneous medium was used as a reference solution. Equivalent transport under homogeneous flow conditions was evaluated by applying the MRMT and aMMT models for upscaling. The relationship between mass transfer coefficients and flow rates was fitted under steady-state flow driven by various hydraulic gradients. A power law relationship was obtained, which was then used to update the mass transfer coefficients in each stress period under transient flow conditions in the aMMT method. Results indicated that for advection-dominated transport, both the MRMT and aMMT methods can upscale the anomalous transport dynamics affected by subgrid heterogeneity under transient flow conditions. Whereas for diffusion-dominated systems, the MRMT model failed to capture the tails of tracer breakthrough curves after the boundary condition changed, but the results from the aMMT model were significantly improved. However, if the overall flow direction changed, both MRMT and aMMT failed to represent the breakthrough curve tail generated by the heterogeneous system. The results point toward a promising path for upscaling transport in complex aquifers with transient flow.
机译:区域规模地下水质量的长期评价需要有效的瞬态流动升高方法。具有恒定升高参数的多型传质(MRMT)方法的Upcaling技术已被用于使用稳态流传输,但是升高参数(即速率系数)可能是依赖于时间。该研究通过允许MRMT中的质量传递系数与流场改变来提出并验证了自适应MRMT(AMMT)方法。在3-D非均相培养基中模拟的平适分散污染物作为参考溶液。通过施加MRMT和AMMT模型来评估均匀流动条件下的等效运输。传质系数和流速之间的关系在由各种液压梯度驱动的稳态流下装配。获得了电力法关系,然后在AMMT方法中用于在瞬态流动条件下更新每个应力时段中的传质系数。结果表明,对于平面主导的运输,MRMT和AMMT方法都可以高档受瞬态流动条件下受细分异质性影响的异常传输动态。鉴于扩散主导的系统,MRMT模型未能在边界条件发生变化后捕获示踪突破曲线的尾部,但是来自AMMT模型的结果显着提高。然而,如果整体流动方向改变,MRMT和AMM都未能代表异构系统产生的突破曲线尾。结果指出了具有瞬态流动的复杂含水层上的升高运输路径。

著录项

  • 来源
    《Water resources research》 |2020年第2期|e2019WR026000.1-e2019WR026000.18|共18页
  • 作者单位

    Southern Univ Sci & Technol Sch Environm Sci & Engn Guangdong Prov Key Lab Soil & Groundwater Pollut Shenzhen Peoples R China|Univ Calif Davis Hydrol Sci Davis CA 95616 USA;

    Univ Calif Davis Hydrol Sci Davis CA 95616 USA;

    Univ Calif Davis Hydrol Sci Davis CA 95616 USA;

    Univ Alabama Dept Geol Sci Tuscaloosa AL USA;

    Southern Univ Sci & Technol Sch Environm Sci & Engn Guangdong Prov Key Lab Soil & Groundwater Pollut Shenzhen Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aMMT; MRMT; upscaling; transport; transient flow;

    机译:ammt;MRMT;升级;运输;瞬态流量;

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