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Effects of structural and compositional factors on soil electromagnetic properties

机译:结构和组成因素对土壤电磁特性的影响

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Electromagnetic properties of clay soils can be affected by many factors, including clay mineralogy, clay percentage, flocculation of clay particles, pore fluid salt concentration, anisotropy, and water content. The influences of these factors on soil dielectric permittivity and electrical conductivity are analysed using a theoretical model developed for clay minerals and the modified Maxwell-Garnett mixing formula. The analysis shows that, at frequencies higher than 50 MHz, the real permittivity of an isotropic soil is affected primarily by water content, clay percentage and clay mineralogy and, to a lesser extent, by pore fluid salt concentration and flocculation. Three theoretical correlations are established for saturated isotropic clay-water and sand-water mixtures: (1) correlation between volumetric water content and the real permittivity at 1 GHz, (2) correlation between volumetric water content and the dielectric dispersion magnitude from 50 MHz to 1 GHz, and (3) correlation between volumetric water content and the effective electrical conductivity at 20 MHz. These correlations arc validated by measured data for saturated sand, kaolinite, bentonite and mixtures of bentonite and silica flour. A new method to determine volumetric water content and specific surface area from electromagnetic measurements is proposed.
机译:黏土的电磁特性可能受许多因素影响,包括黏土矿物学,黏土百分比,黏土颗粒絮凝,孔隙水盐浓度,各向异性和水含量。使用针对粘土矿物开发的理论模型和改进的Maxwell-Garnett混合公式,分析了这些因素对土壤介电常数和电导率的影响。分析表明,在高于50 MHz的频率下,各向同性土壤的实际介电常数主要受含水量,粘土百分比和粘土矿物学的影响,而在较小程度上受孔隙液盐浓度和絮凝的影响。建立了饱和各向同性粘土-水和砂-水混合物的三个理论相关性:(1)体积含水量与1 GHz时的实际介电常数之间的相关性;(2)体积含水量与介电弥散量级(从50 MHz至1 GHz,以及(3)体积水含量与20 MHz时的有效电导率之间的相关性。这些相关性通过饱和砂,高岭石,膨润土以及膨润土和硅粉混合物的实测数据得到验证。提出了一种通过电磁测量确定体积水含量和比表面积的新方法。

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