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Evaluations of the effects of soil properties and electrical conductivity on the water content reflectometer calibration for landfill cover soils

机译:评价土壤性质和电导率对填埋覆盖土水分反射仪校准的影响

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This study presents soil-moisture calibrations using low-frequency (15–40 MHz) time domain reflectometry (TDR) probe, referred to as water content reflectometer (WCR), for measuring the volumetric water content of landfill cover soils, developing calibrations for 28 different soils, and evaluating how WCR calibrations are affected by soil properties and electrical conductivity. A 150-mm-diameter PVC cell was used for the initial WCR calibration. Linear and polynomial calibrations were developed for each soil. Although the correlation coefficients?( R 2) for the polynomial calibration are slightly higher, the linear calibrations are accurate and pragmatic to use. The effects of soil electrical conductivity and index properties were investigated using the slopes of linear WCR calibrations. Soils with higher electrical conductivity had lower calibration slopes due to greater attenuation of the signal during transmission in the soil. Soils with higher electrical conductivity tended to have higher clay content, organic matter, liquid limit, and plasticity index. The effects of temperature and dry unit weight on WCR calibrations were assessed in clayey and silty soils. The sensor period was found to increase with the temperature and density increase, with greater sensitivity in fine-textured plastic soils. For typical variations in temperature, errors in volumetric water content on the order of 0.04 can be expected for wet soils and 0.01 for drier soils if temperature corrections are not applied. Errors on the order of 0.03 (clays) and 0.01 (silts) can be expected for typical variations in dry unit weight (± 2 kN/m3).
机译:这项研究提出了使用低频(15–40 MHz)时域反射仪(TDR)探头(称为水含量反射仪(WCR))测量土壤湿度的方法,用于测量垃圾掩埋土壤的体积水含量,并针对28不同的土壤,并评估土壤特性和电导率如何影响WCR校准。直径150毫米的PVC样品池用于初始WCR校准。针对每种土壤开发了线性和多项式校准。尽管多项式校准的相关系数?(R 2 )稍高,但线性校准准确而实用。使用线性WCR标定的斜率研究土壤电导率和指数特性的影响。具有较高电导率的土壤具有较低的校准斜率,这是因为在土壤中传输期间信号的衰减更大。具有较高电导率的土壤往往具有较高的粘土含量,有机质,液体极限和可塑性指数。在黏土和粉质土壤中评估了温度和单位干重对WCR校准的影响。发现传感器周期随着温度和密度的增加而增加,在质地较细的塑性土壤中灵敏度更高。对于典型的温度变化,如果不进行温度校正,则湿土壤的体积水含量误差约为0.04,而较干燥土壤的体积水含量误差约为0.01。对于干燥单位重量的典型变化(±2 kN / m 3 ),可以预期的误差约为0.03(粘土)和0.01(淤泥)。

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