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首页> 外文期刊>Hydrological sciences journal >Soil water content and salinity determination using different dielectric methods in saline gypsiferous soil
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Soil water content and salinity determination using different dielectric methods in saline gypsiferous soil

机译:盐生石膏质土壤中不同介电方法的土壤水分和盐分测定。

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Measurements of dielectric permittivity and electrical conductivity were taken in a saline gypsiferous soil collected from southern Tunisia. Both time domain reflectometry (TDR) and the new WET sensor based on frequency domain reflectometry (FDR) were used. Seven different moistening solutions were used with electrical conductivities of 0.0053-14 dS m~(-1). Different models for describing the observed relationships between dielectric permittivity (K_a) and water content (θ), and bulk electrical conductivity (EC_a) and pore water electrical conductivity (EC,,) were tested and evaluated. The commonly used K_a-θ models by Topp et al. (1980) and Ledieu et al. (1986) cannot be recommended for the WET sensor. With these models, the RMSE and the mean relative error of the predicted θ were about 0.04 m~3 m~(-3)and 19% for TDR and 0.08 m~3 m~(-3) and 54% for WET sensor measurements, respectively. Using the Hilhorst (2000) model for EC, predictions, the RMSE was 1.16 dS m~(-1) and 4.15 dS m~(-1) using TDR and the WET sensor, respectively. The WET sensor could give similar accuracy to TDR if calibrated values of the soil parameter were used instead of standard values.
机译:在从突尼斯南部收集的盐生石膏状土壤中进行介电常数和电导率的测量。时域反射仪(TDR)和基于频域反射仪(FDR)的新型WET传感器均被使用。使用了七种不同的润湿溶液,电导率为0.0053-14 dS m〜(-1)。测试和评估了用于描述介电常数(K_a)和水含量(θ)以及体积电导率(EC_a)和孔隙水电导率(EC,)之间关系的不同模型。 Topp等人常用的K_a-θ模型。 (1980)和Ledieu等。 WET传感器不推荐使用(1986)。使用这些模型,RMSE和预测θ的平均相对误差分别约为TDR的0.04 m〜3 m〜(-3)和19%,WET传感器的测量值分别为0.08 m〜3 m〜(-3)和54% , 分别。使用Hilhorst(2000)模型进行EC预测,使用TDR和WET传感器的RMSE分别为1.16 dS m〜(-1)和4.15 dS m〜(-1)。如果使用土壤参数的校准值代替标准值,则WET传感器可以提供与TDR相似的精度。

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