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首页> 外文期刊>Environmental Geology >Surface electrical resistivity tomography and hydrogeological characterization to constrain groundwater flow modeling in an agricultural field site near Ferrara (Italy)
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Surface electrical resistivity tomography and hydrogeological characterization to constrain groundwater flow modeling in an agricultural field site near Ferrara (Italy)

机译:表面电阻率层析成像和水文地质特征限制了费拉拉(意大利)附近农田的地下水流模型

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摘要

A portion of an unconfined alluvial aquifer located in the Padana Plain (Italy) was characterized following an integrated hydro-geophysical approach. Initially an electrical resistivity tomography (ERT) survey was employed to localize the boundaries of a modest paleo-channel body and to design the installation of a groundwater monitoring network. Multilevel slug-tests were performed to estimate the aquifer's saturated hydraulic conductivities. Determined permeability values together with electrical resistivity data were correlated. The correlation resulted in a site specific bi-logarithmic linear relationship. Based on this relationship, punctually determined hydraulic conductivities were spatially extended over the studied flow domain. Finally, continuously measured piezometric heads were used to calibrate a 3D flow model. Sensitivity analysis was performed to confirm the reliability of the reconstructed permeability field, as well as, to assess the minimum number of direct measurements needed to safely characterize the selected aquifer portion. The integration of the ERT survey results with the classical hydrogeological testsrncan be conveniently applied to constrain the permeability field during flow model calibration. Although the applicability of the determined relationship is site specific, the followed procedure is useful especially when there is a need to optimize the available resources and in case of small-scale pilot studies.
机译:采用综合水文地球物理方法对位于帕达纳平原(意大利)的无限制冲积含水层的一部分进行了表征。最初,电阻层析成像(ERT)调查用于确定适度古河道体的边界并设计地下水监测网络的安装。进行了多段塞测试,以估算含水层的饱和水力传导率。将确定的磁导率值与电阻率数据关联起来。该相关性导致位点特异性的双对数线性关系。基于此关系,准时确定的水力传导率在研究的流域中在空间上扩展。最后,连续测量的测压头用于校准3D流量模型。进行了敏感性分析,以确认重建的渗透率场的可靠性,以及评估安全表征所选含水层部分所需的直接测量的最小数量。 ERT测量结果与经典水文地质测试的集成可以方便地应用于在流模型校准过程中约束渗透率场。尽管确定关系的适用性是针对特定地点的,但是遵循以下步骤非常有用,特别是在需要优化可用资源以及进行小规模试点研究的情况下。

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