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Anomalous solute transport in saturated porous media:linking transport model parameters to electrical and nuclear magnetic resonance properties

机译:饱和多孔介质中溶质的反常传输:将传输模型参数与电和核磁共振特性联系起来

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摘要

The advection-dispersion equation (ADE) fails to describe commonly observed non-Fickian solute transport in saturated porous media, necessitating the use of other models such as the dual-domain mass-transfer (DDMT) model. DDMT model parameters are commonly calibrated via curve fitting, providing little insight into the relation between effective parameters and physical properties of the medium. There is a clear need for material characterization techniques that can provide insight into the geometry and connectedness of pore spaces related to transport model parameters. Here, we consider proton nuclear magnetic resonance (NMR), direct-current (DC) resistivity, and complex conductivity (CC) measurements for this purpose, and assess these methods using glass beads as a control and two different samples of the zeolite clinoptilolite, a material that demonstrates non-Fickian transport due to intragranular porosity. We estimate DDMT parameters via calibration of a transport model to column-scale solute tracer tests, and compare NMR, DC resistivity, CC results, which reveal that grain size alone does not control transport properties and measured geophysical parameters; rather, volume and arrangement of the pore space play important roles. NMR cannot provide estimates of more-mobile and less-mobile pore volumes in the absence of tracer tests because these estimates depend critically on the selection of a material-dependent and flow-dependent cutoff time. Increased electrical connectedness from DC resistivity measurements are associated with greater mobile pore space determined from transport model calibration. CC was hypothesized to be related to length scales of mass transfer, but the CC response is unrelated to DDMT.
机译:对流弥散方程(ADE)无法描述在饱和多孔介质中通常观察到的非菲克溶质运移,因此必须使用其他模型,例如双域传质(DDMT)模型。 DDMT模型参数通常通过曲线拟合进行校准,因此对有效参数与介质物理特性之间的关系了解甚少。显然需要材料表征技术,该技术可以洞悉与运输模型参数有关的孔隙空间的几何形状和连通性。在这里,我们为此目的考虑质子核磁共振(NMR),直流电(DC)电阻率和复电导率(CC)测量,并使用玻璃珠作为对照和两个斜发沸石沸石样品评估了这些方法,一种由于颗粒内孔隙而表现出非菲克式传输的材料。我们通过校准运输模型到柱规模的溶质示踪剂测试来估计DDMT参数,并比较NMR,DC电阻率和CC结果,这表明仅晶粒大小并不能控制运输特性和测得的地球物理参数。相反,孔空间的体积和排列起着重要的作用。在没有示踪剂测试的情况下,NMR无法提供流动性更高和流动性较小的孔体积的估算值,因为这些估算值主要取决于对材料和与流量相关的截止时间的选择。直流电阻率测量值增加的电连接性与通过传输模型校准确定的更大的活动孔隙空间有关。假设CC与传质的长度尺度有关,但CC响应与DDMT无关。

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