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A geostatistical approach to the estimation of a solute trajectory through porous formations

机译:地统计学方法估计通过多孔地层的溶质轨迹

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When dealing with groundwater flows, many difficulties arise in the characterization of an aquifer and in the identification of the solute trajectories, due to the natural heterogeneity of the porous formations. Transmissivity spatial variability is the main source of uncertainty in an aquifer system in the study of two-dimensional flows and as detailed knowledge of its values is not possible, the flow and transport phenomena are subject to uncertainty. This manuscript deals with the problem of the estimation of a solute trajectory and it presents the combined use of piezometric head, transmissivity and solute trajectory displacement data for the estimation of the solute path. The work is carried out in a stochastic framework and linear theory tools are used. The proposed methodology is a cokriging application and it has been tested by means of two Monte Carlo experiments carried out for two degrees of heterogeneity, one has been performed considering weakly heterogeneous aquifers, the other highly heterogeneous aquifers. A numerical application, based on a real transmissivity heterogeneous field, has been proposed. The results of the computation show the important impact of trajectory displacement data on the estimation of the solute path.
机译:在处理地下水流时,由于多孔岩层的天然非均质性,在表征含水层和确定溶质轨迹方面会遇到许多困难。透射率空间变异性是二维流动研究中含水层系统不确定性的主要来源,并且由于不可能详细了解其值,因此流动和传输现象容易受到不确定性的影响。该手稿处理了溶质轨迹的估计问题,并提出了测压头,透射率和溶质轨迹位移数据在溶质路径估计中的结合使用。该工作在随机框架中进行,并使用线性理论工具。所提出的方法是cokriging应用程序,并且已通过针对两个非均质度进行的两个蒙特卡洛实验进行了测试,一个已考虑了弱非均质含水层,另一个考虑了非均质含水层。已经提出了基于真实透射率异质场的数值应用。计算结果表明,轨迹位移数据对溶质路径的估计有重要影响。

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