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Dielectric Spectroscopy and Application of Mixing Models Describing Dielectric Dispersion in Clay Minerals and Clayey Soils

机译:粘土矿物和粘土土壤介电分散介电分散的混合模型的介电光谱与应用

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摘要

The number of sensors, ground-based and remote, exploiting the relationship between soil dielectric response and soil water content continues to grow. Empirical expressions for this relationship generally work well in coarse-textured soils but can break down for high-surface area and intricate materials such as clayey soils. Dielectric mixing models are helpful for exploring mechanisms and developing new understanding of the dielectric response in porous media that do not conform to a simple empirical approach, such as clayey soils. Here, we explore the dielectric response of clay minerals and clayey soils using the mixing model approach in the frequency domain. Our modeling focuses on the use of mixing models to explore geometrical effects. New spectroscopic data are presented for clay minerals (talc, kaolinite, illite and montmorillonite) and soils dominated by these clay minerals in the 1 MHz–6 GHz bandwidth. We also present a new typology for the way water is held in soils that we hope will act as a framework for furthering discussion on sensor design. We found that the frequency-domain response can be mostly accounted for by adjusting model structural parameters, which needs to be conducted to describe the Maxwell–Wagner (MW) relaxation effects. The work supports the importance of accounting for soil structural properties to understand and predict soil dielectric response and ultimately to find models that can describe the dielectric–water content relationship in fine-textured soils measured with sensors.
机译:传感器数量,地面和遥远,利用土壤介电反应与土壤水含量之间的关系继续生长。这种关系的经验表达通常在粗糙纹理的土壤中工作很好,但可以分解高表面积和复杂的材料,如粘土土壤。介电混合模型有助于探索机制,并开发对多孔介质中的介电反应的新理解,这些介质不符合简单的经验方法,例如粘土土壤。在这里,我们利用频域中的混合模型方法探索粘土矿物和粘土土壤的介电响应。我们的建模侧重于使用混合模型来探索几何效果。新的光谱数据用于粘土矿物质(滑石,高岭石,伊尔菊和蒙脱石)和由1 MHz-6 GHz带宽中的这些粘土矿物占主导地位的土壤。我们还提出了一种新的类型,因为我们希望在土壤中持有的方式,以便将作为进一步讨论传感器设计的框架。我们发现,通过调整模型结构参数,可以通过调整模型结构参数来描述频率域响应,这需要进行以描述Maxwell-Wagner(MW)松弛效果。该工作支持核对土壤结构特性的重要性,以了解和预测土壤介质响应,最终找到可以描述用传感器测量的细色织土壤中介电含水量关系的模型。

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