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Development of an in situ thermal conductivity measurement system for exploration of the shallow subsurface

机译:开发用于地下浅层勘探的原位热导率测量系统

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摘要

In this study, we attempted to develop an in situ thermal conductivity measurement system that can be used for subsurface thermal exploration. A new thermal probe was developed for mapping both the spatial and temporal variability of thermal conductivity, via direct push methods in the unconsolidated shallow subsurface. A robust, hollow cylindrical probe was constructed and its performance was tested by carrying out thermal conductivity measurements on materials with known properties. The thermal conductivity of the investigated materials can be worked out by measuring the active power consumption (in alternating current system) and temperature of the probe over fixed time intervals. A calibration method was used to eliminate any undesired thermal effects regarding the size of the probe, based on mobile thermal analyzer thermal conductivity values. Using the hollow cylindrical probe, the thermal conductivity results obtained had an error of less than 2.5% for solid samples (such as Teflon, Agar Jelly and Nylatron).
机译:在这项研究中,我们试图开发一种可用于地下热勘探的原位热导率测量系统。开发了一种新的热探针,用于通过在未固结的浅层次地下中的直接推动方法来绘制热导率的空间和时间变化。构造了坚固的空心圆柱形探针,并通过对具有已知特性的材料进行热导率测量来测试其性能。通过测量固定时间间隔内的有功功率消耗(在交流电系统中)和探头温度,可以计算出所研究材料的导热系数。基于移动式热分析仪的热导率值,使用了一种校准方法来消除关于探头尺寸的任何不希望的热效应。使用空心圆柱探针,对于固体样品(例如特富龙,琼脂冻和Nylatron)获得的热导率结果的误差小于2.5%。

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