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Impacts of the Real and Imaginary Components of Relative Permittivity on Time Domain Reflectometry Measurements in Soils

机译:相对介电常数的虚部和虚部对土壤时域反射法测量的影响

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摘要

Time domain reflectometry (TDR) is widely used for routine field monitoring of water content and salts in soils. Most estimates of water content assume the TDR-measured apparent relative permittivity, a, is a good approximation for the real component, 'r, of the soil's complex relative permittivity with the magnitude of 'r being determined primarily by water content. We examine this assumption and show that a is influenced by both the real and imaginary components of the relative permittivity. Increases in a resulted from the dc conductivity and dielectric loss arising from the presence of ions in solution and clay content. At water contents above 0.15 m3 m-3 in soils with high clay content and/or salt, specific calibrations are needed for precise determinations of water content from TDR. We use the wave propagation equations to separate the real and imaginary component contributions to a. The Giese and Tiemann interpretation for dc conductivity was again shown to be within 10% of that from a conductance meter and this fact was used to propose a method using only TDR data to separate real and imaginary components of the relative permittivity. It was found that the dielectric losses and conductive losses did not differ according to the source of conductivity, whether from clay content in the soil matrix or electrolyte in the soil solution.
机译:时域反射仪(TDR)被广泛用于常规的 监测土壤中的水分和盐分的方法。大多数水含量估算 假定TDR测量的表观相对介电常数 a 是真实成分'的良好近似值 土壤的相对相对介电常数 r ,幅值为' r < / sup>主要由含水量决定。我们检查了这个 假设,并证明 a 受相对介电常数的实部和 虚构分量的影响。 a 的增加是由于溶液中离子的存在和粘土含量引起的直流电导率和介电损耗引起的。在水 含量大于0.15 m 3 m -3 的情况下,粘土含量高和/或 盐高的土壤中,需要精确校准 TDR中的水含量。我们使用波传播方程式 将实部和虚部分量对 a 的贡献分开。再次证明了对直流电导率 的Giese和Tiemann解释与电导 表的解释在10%之内,并且此事实被用于提出仅使用的方法。 TDR数据可分离相对 介电常数的实部和虚部。结果发现,介电损耗和导电性 的损失并没有随电导率的来源而变化, 与土壤基质中的粘土含量或电解质 在土壤溶液中。

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  • 来源
    《Soil Science Society of America Journal》 |2000年第4期|1244-1251|共8页
  • 作者

    G.C. Topp; S. Zegelin; I. White;

  • 作者单位

    Crop Production, Eastern Cereal and Oilseed Research Centre, Agriculture and Agri-Food Canada, 960 Carling Ave., Ottawa, Canada, K1A 0C6,Water Research Foundation of Australia, Centre for Resources and Environmental Studies, Australian National Univ., Canberra, ACT 2601, Australia;

    Land and Water Commonwealth Scientific and Industrial Research Organization, G.P.O. Box 1666, Canberra, ACT 2601, Australia,Water Research Foundation of Australia, Centre for Resources and Environmental Studies, Australian National Univ., Canberra, ACT 2601, Australia;

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