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Equation for Describing Solute Transport in Field Soils with Preferential Flow Paths

机译:用优先流路径描述田间土壤溶质运移的方程。

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摘要

Modeling the transport of chemicals is challenging due to the presence of preferential flow paths and the input data needed to describe these paths. We propose a simple equation that can predict the breakthrough of solutes without excessive data requirements under steady state flow conditions. In our generalized preferential flow model (GPFM), the soil is conceptually divided into a distribution zone and a conveyance zone. The distribution zone acts as a linear reservoir resulting in an exponential loss of solutes through preferential flow paths from this zone. In the conveyance zone, the transport of solutes is described with the convective-dispersive (CD) equation. Input data required are the apparent water content of the distribution zone, and solute velocities and dispersivities in the conveyance zone. The model is tested with chloride breakthrough curves (BTCs) resulting from three sets of experiments performed with steady state artificial acid rainfall at different intensities applied sequentially using duplicate columns filled with undisturbed soil or sand both exhibiting preferential flow. The model is able to describe the breakthrough of solutes with physically meaningful parameters through coarse sand with fingered flow and through undisturbed soil cores. In coarse sand, water and solutes flow only through the fingered flow paths in the conveyance zone. In undisturbed columns there is both flow through the matrix and preferential flow paths, and two velocities in the conveyance zone are needed to simulate the breakthrough curves.
机译:由于优先流动路径的存在和描述这些路径所需的输入数据,对化学物质的运输进行建模具有挑战性。我们提出了一个简单的方程,该方程可以 在稳态流动条件下预测溶质的突破而无需过多的数据要求 。在我们的广义特惠流动模型(GPFM)中,土壤在概念上分为分配区域和输送区域。分布区充当 线性储层,导致通过该区的优先流动路径使溶质 呈指数损失。在输送 区域中,溶质的输送用对流扩散 (CD)方程描述。所需的输入数据是分配区的表观水含量 ,以及输送区中的溶质速度和分散度 。使用三组实验连续进行的三组实验 产生的氯离子突破 曲线(BTC)对该模型进行了测试,依次进行了不同强度的稳态人工酸降雨。使用填充有未扰动的 土或沙的重复列,均显示优先流动。该模型 可以描述具有有意义的物理参数的溶质通过具有指流的粗砂 和不受扰动的土壤核心的突破。在粗砂中,水和 溶质仅流过输送 区域中的指状流路。在未受干扰的列中,均流过 矩阵和优先流路,并且在 输送带中需要两个速度来模拟穿透曲线。

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  • 来源
    《Soil Science Society of America Journal》 |2005年第2期|291-300|共10页
  • 作者单位

    Dep. of Biological and Environmental Engineering, Riley-Robb Hall, Cornell Univ., Ithaca, NY 14853, currently at Environmental Sciences Division, Oak Ridge National Lab., Oak Ridge, TN 37831,Biological and Agricultural Systems Engineering, Florida A&M Univ., Tallahassee, FL 32307;

    Dep. of Biological and Environmental Engineering, Riley-Robb Hall, Cornell Univ., Ithaca, NY 14853,Biological and Agricultural Systems Engineering, Florida A&M Univ., Tallahassee, FL 32307;

    Dep. of Civil and Materials Engineering, Univ. of Illinois at Chicago, Chicago, IL 60607,Biological and Agricultural Systems Engineering, Florida A&M Univ., Tallahassee, FL 32307;

    Dep. of Civil and Materials Engineering, Univ. of Illinois at Chicago, Chicago, IL 60607,Biological and Agricultural Systems Engineering, Florida A&M Univ., Tallahassee, FL 32307;

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