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Effect of Cable Length on Time Domain Reflectometry Calibration for High Surface Area Soils

机译:电缆长度对高表面积土壤时域反射计校准的影响

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摘要

Time domain reflectometry (TDR) has been used by soil scientists to determine soil water content (). A waveform analysis determines an apparent dielectric number (a) which can often be empirically related to . "Bound water" near colloid surfaces has different properties than free water. At the gigahertz frequencies used for TDR, free water has a negative temperature effect but bound water has a positive temperature effect on dielectric number. Long coaxial cables reduce the higher frequencies of the TDR equipment, which can influence the frequency dependent a of bound water. The objective of this study was to determine the effect of coaxial cable length and temperature on apparent dielectric properties for samples with and without large amounts of bound water. Two undisturbed columns of Okoboji mucky silty clay loam (fine, smectitic, mesic cumulic Endoaquoll) with a specific surface area of 286 m2 g-1 and two packed sand samples with calculated surface areas of 0.01 m2 g-1 were used for the experiment. The a was determined at four cable length combinations, three temperatures, and a range of . The temperature correction factors for Okoboji ranged from 0.008 to 0.012 /°C, depending on cable length. Long cables increased the rise time 41%, which decreased the frequency bandwidth. The Okoboji samples had a bulk electrical conductivity as high as 0.14 S m-1, which hampered determination of the final part of the waveform. In summary for Okoboji, cable length and temperature had a greater effect on a than did . High surface area samples should be calibrated using the same cable length used for measurements, and the temperature effect should be incorporated.
机译:土壤科学家 已使用时域反射法(TDR)确定土壤含水量()。波形分析确定 视在介电数( a ),该数通常凭经验与 相关。胶体表面附近的“结合水”具有与游离水不同的 属性。在用于TDR的千兆赫兹频率上,自由水对温度有负影响,而结合水对介电常数则有正温度影响。电缆会降低TDR 设备的较高频率,这可能会影响与 结合的水的随频率变化的 a 。这项研究的目的是确定同轴电缆的长度和温度对具有和没有大量​​结合 的样品的表观介电质 性质的影响。水。 Okoboji泥质粉质壤土 的两根未受干扰的柱(细,近晶,中性累积积土),其 表面积为286 m 2 g <实验中使用了sup> -1 和两个装填的砂样品, 计算的表面积为0.01 m 2 g -1 a 是在四个电缆长度组合,三个 温度和范围为的情况下确定的。 Okoboji的温度校正因子 范围从0.008到0.012 /°C,具体取决于 电缆的长度。长电缆将上升时间增加了41%,这 减小了频率带宽。 Okoboji样品的 体导电率高达0.14 S m -1 ,这妨碍了波形的最后部分的确定。总结 对于Okoboji,电缆长度和温度对 a 的影响更大 。高表面积样品应使用与测量相同的电缆长度进行校准 ,并且应结合温度 的影响。

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