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Quantitative imaging of solute transport in an unsaturated and undisturbed soil monolith with 3-D ERT and TDR

机译:使用3-D ERT和TDR对不饱和和未扰动土壤整料中溶质运移的定量成像

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摘要

Electrical resistivity tomography (ERT) has proved to be a valuable tool for imaging solute transport processes in the subsurface. However, a quantitative interpretation of corresponding ERT results is constrained by a number of factors. One such factor is the nonuniqueness of the ERT inverse problem if no additional constraints are imposed. In the vadose zone, further problems arise from the general ambiguity of the imaged bulk electrical conductivity in terms of water content and solute concentration. In this study we address these issues in detail for a solute tracer experiment conducted in an undisturbed unsaturated soil monolith where the tracer transport was monitored by means of 3-D smoothness-constrained ERT and time domain reflectometry (TDR) measurements. The experimental design allowed the determination of solute tracer concentrations directly from imaged bulk electrical conductivity. Independent TDR data and effluent tracer concentrations provided a "ground truth'' for the ERT-derived apparent convection-dispersion equation transport parameters. The apparent transport velocity calculated from the ERT results was consistent with that based on TDR data and the sampled effluent, independent of the degree of smoothness imposed in the ERT inversion. On the other hand, the apparent dispersivity calculated from the ERT results was larger than that estimated from TDR data but smaller than that estimated from the sampled effluent, with the magnitude of deviations dependent on the degree of smoothing. Importantly, no mass balance problems were observed in the ERT results. We believe that this is largely a consequence of the uniform application of the tracer as a front and of the configuration of the electrode array with respect to the main transport direction. In conclusion, the study demonstrates that ERT can yield unprecedented quantitative information about local- and column-scale solute transport characteristics in natural soils.
机译:电阻层析成像(ERT)已被证明是用于对地下溶质传输过程进行成像的有价值的工具。但是,对相应ERT结果的定量解释受到许多因素的限制。如果不施加其他约束,则这样的因素之一就是ERT反问题的非唯一性。在渗流区内,就含水量和溶质浓度而言,成像的整体电导率的总体模棱两可进一步带来了问题。在这项研究中,我们针对在未扰动的非饱和土壤整料中进行的溶质示踪剂实验,详细解决了这些问题,其中通过3D光滑度受限的ERT和时域反射法(TDR)测量来监测示踪剂的迁移。实验设计允许直接从成像的整体电导率确定溶质示踪剂浓度。独立的TDR数据和废水示踪剂浓度为ERT得出的对流-弥散方程输运参数提供了一个“地面真相”,从ERT结果计算得出的视在输运速度与基于TDR数据和采样的废水的独立运移速度一致。另一方面,从ERT结果计算得出的表观分散度大于从TDR数据估算得到的表观分散度,但小于从采样流出物中估算的表观分散度,偏差的大小取决于重要的是,在ERT结果中未观察到质量平衡问题,我们认为,这在很大程度上是由于示踪剂作为前部的均匀应用以及电极阵列相对于主传输方向的配置的结果总之,研究表明ERT可以产生有关本地和社区的前所未有的定量信息天然土壤中微米级的溶质运移特性。

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