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A Self-Calibrated Dual Probe Heat Pulse Sensor for In Situ Calibrating the Probe Spacing

机译:用于现场校准探头间距的自校准双探头热脉冲传感器

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摘要

Dual probe heat pulse method (DPHP) is a popular method for measuring soil thermal properties. However when this method is applied in the field, the distance between the temperature probe and the heating probe (probe spacing) may change due to probe deflection, and thus cause error in measured heat capacity (c) of soil. We developed a self-calibrated DPHP for in situ calibration of probe spacing, using a temperature probe with two imbedded thermistors (10 mm apart in the longitudinal direction). Experimental results for sand and fine sand samples indicate that this method can significantly reduce error caused by the probe deflection. If we define theta as the inclination angle of probe deviation from the vertical direction, for inward deflection with 0.8 degrees < theta < 0.9 degrees, the error in c is between -8.1 and -14.3%; after in situ calibration, it is between -0.1 and -4.3%. For outward deflection with 3.2 degrees < theta < 3.5 degrees, the error in c is in the range from 22.9 to 38.8%; after in situ calibration, the error reduces to from -3.8 to -7.8%. This new DPHP design may be applied in the field for reducing error caused by probe deflection.
机译:双探针热脉冲法(DPHP)是一种测量土壤热特性的流行方法。但是,当在现场应用此方法时,温度探头和加热探头之间的距离(探头间距)可能会因探头的挠度而改变,从而导致土壤热容(c)的测量误差。我们使用带有两个嵌入式热敏电阻(纵向间隔10 mm)的温度探头,开发了一种用于现场校准探头间距的自校准DPHP。砂和细砂样品的实验结果表明,该方法可以显着降低探头变形引起的误差。如果将θ定义为探头与垂直方向的偏离的倾斜角度,则对于0.8度

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