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首页> 外文期刊>Journal of Hydrology >Estimating spatial distributions of hydraulic parameters for a two-scale structured heterogeneous lignitic mine soil
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Estimating spatial distributions of hydraulic parameters for a two-scale structured heterogeneous lignitic mine soil

机译:二维结构化异质树状矿山土壤水力参数的空间分布估算

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摘要

In lignitic mine soils, monitoring of water and solute fluxes is required to assess and mitigate the impact of acid mine drainage on groundwater quality and the success of revegetation. These soils exhibit an appreciable heterogeneity of hydraulic properties, which originates both from the spatial distribution of lignitic components and inclined sedimentary structures. Both types of heterogeneity may lead to preferential flow. Water and element balances are, mostly calculated by using one-dimensional (1D) numerical models, which do not account for preferential flow effects. Application of more complex model approaches is hampered by the lack of information about the spatial distribution of hydraulic parameters. The objective of this study is to assess the spatial distribution of hydraulic parameters for a sandy lignitic mine soil site based on visible structures in a 2D-vertical excavated soil cross-section. The hydraulic properties are calculated from the measured bulk densities and texture data, using the Kozeny-Carmanequation-equation for the saturated hydraulic conductivity, K-s and the Arya-Paris approach for the water retention characteristics, psi(theta). The effective porosity for K-s is reduced and the water retention increased in proportion to the lignite contents. Small-scale variability of hydraulic parameters is evaluated by using photographs of lignitic fragment distributions. For the discernable inclined layer structures, with a width of approximately 40 cm and a dip of 35 degrees,K-s values in the range between 2.5 and 250 cm/d are estimated. The variability of the water retention characteristics is less pronounced. The predicted psi(theta) functions are more comparable with loamy than sandy soils. The small-scale intra-layer variability of hydraulic parameters is higher than for lignite-poor mine spoil sediments and for most natural soils. The results may help to improve the analyses of flow and transport in lignitic mine soils by providing 2D two-scale parameter distributions for numerical simulations.
机译:在木质矿山土壤中,需要监测水和溶质通量,以评估和减轻酸性矿山排水对地下水质量和植被恢复的影响。这些土壤表现出明显的水力特性异质性,其起源于木炭组分的空间分布和倾斜的沉积结构。两种异质性都可能导致优先流动。水和元素平衡通常是使用一维(1D)数值模型计算的,该模型不考虑优先流动效应。由于缺乏有关水力参数空间分布的信息,阻碍了更复杂模型方法的应用。这项研究的目的是基于二维垂直挖掘的土壤横截面中的可见结构,评估砂质褐煤矿土壤场地水力参数的空间分布。根据所测量的堆积密度和质地数据,使用针对饱和水力传导率的Kzeny-Carmanequation方程K-s和针对保水特性psi(θ)的Arya-Paris方法,计算水力特性。 K-s的有效孔隙率降低,保水率与褐煤含量成正比。水力参数的小范围可变性通过使用木质碎片分布的照片进行评估。对于可辨别的倾斜层结构,其宽度大约为40 cm,倾角为35度,估计的K-s值在2.5和250 cm / d之间。保水特性的可变性不太明显。预测的psi(θ)函数在壤土上比沙质土壤更具可比性。水力参数的小规模层内变异性高于贫褐煤矿渣沉积物和大多数天然土壤。通过提供用于数值模拟的二维两尺度参数分布,结果可能有助于改善对褐煤矿土壤中流动和运输的分析。

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