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Effect of spatial variations and desiccation cracks on the DPHP and MPHP sensors

机译:空间变化和干燥裂缝对DPHP和MPHP传感器的影响

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摘要

In sensing soil-moisture, there are inherent field related issues such as uncertainty and unpredictable distribution of minute amounts of trapped water and morphological changes of soil such as lumps and cracks due to desiccation. This poses problems for measurements done using a dual-probe heat-pulse (DPHP) technique that uses a narrow cylindrical sampling zone between heater and temperature probes. Thus, DPHP sensors are susceptible to errors. Hence, we studied and compared single-point and multi point soil-moisture measurements using the heat-pulse technique. For this, we designed and developed a multi-point heat-pulse (MPHP) sensor with three temperature probes that enhanced the sampling zone to a volume of 840 mm(3), which is three times that of the DPHP sensor. Sequentially deployed DPHP and MPHP sensors with spatial variations revealed that the maximum difference between the measured percentage of moisture from the DPHP sensor and standard oven-dried instrument was more than 10%, whereas for the MPHP sensor the discrepancy was only around 3%. Furthermore, when cracks appeared in the soil mass, it was observed that the discrepancy of DPHP sensor is around 16% while that for the MPHP sensor was still only 3%. (C) 2018 Elsevier B.V. All rights reserved.
机译:在传感土壤水分中,存在固有的场相关问题,例如不确定和不可预测的分布分布的捕获水和土壤等土壤的形态变化,例如由于干燥引起的土壤和裂缝。这种使用双探针热脉冲(DPHP)技术完成的测量问题,该技术在加热器和温度探针之间使用窄圆柱采样区域。因此,DPHP传感器易于错误。因此,我们使用热脉冲技术研究和比较了单点和多点土壤湿度测量。为此,我们设计并开发了一种具有三个温度探头的多点热脉冲(MPHP)传感器,可将采样区增强到840mm(3)的体积,这是DPHP传感器的三倍。顺序地部署的DPHP和带空间变化的MPHP传感器显示,从DPHP传感器和标准烘箱干燥仪器测量的水分百分比之间的最大差异大于10%,而对于MPHP传感器,差异仅为3%左右。此外,当裂缝出现在土壤质量中时,观察到DPHP传感器的差异约为16%,而MPHP传感器的差异仍然仅为3%。 (c)2018年elestvier b.v.保留所有权利。

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