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Random Uncertainty in the Measurement of Matric Potential Using the Miniature Tensiometer

机译:微型张力计在矩阵电位测量中的随机不确定度

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The miniature (high-capacity) tensiometer is increasingly being used both in practice and in research to determine the matric potential in unsaturated soils. Although the potential which can be recorded with this type of device tends to be limited to a maximum of approximately 1500 kPa (a function of the air entry value of the porous element), simplicity of use, together with the ability to measure potentials under atmospheric conditions, makes this a unique piece of equipment for investigating and characterizing the hydro-mechanical response of unsaturated soils in the laboratory and in the field. The use of the miniature tensiometer is now well established and documented, and the particulars of a number of such devices, together with modifications to standard laboratory equipment to accommodate them, have appeared in the literature. The measurement of potential with the tensiometer, like any other measurement of a physical quantity, is not exempt from a certain degree of uncertainty. Additionally, the device is usually calibrated by applying a positive water pressure; however, when in use, the fluid filling the internal reservoir experiences a tensile stress. Although extrapolation of the calibration curve to negative values of water pressure is justified, it is nevertheless interesting to assess the level of uncertainty associated with a single measurement of potential in a soil. To this effect, data on gravimetric water content and matric potential from a statistically representative set of clay samples, carefully prepared and compacted in a similar manner to the same initial conditions, were analysed. This paper presents details and results from this exercise, together with the statistical treatment of the data.
机译:微型(高容量)张力计正在实践和研究中越来越多地用于确定非饱和土壤中的基质势。尽管可以用这种类型的设备记录的电势倾向于限制在最大约1500 kPa(取决于多孔元件的空气进入值的函数),但使用简便,并具有在大气下测量电势的能力在这种条件下,它成为用于研究和表征实验室和野外非饱和土壤水力-机械响应的独特设备。现在已经很好地建立和记录了微型张力计的使用,并且在文献中已经出现了许多这种装置的细节以及对标准实验室设备的修改以适应它们。像张力仪的电位测量一样,与物理量的任何其他测量一样,也不能免除一定程度的不确定性。另外,通常通过施加正水压来校准设备。但是,在使用中,填充内部储液器的流体会受到拉应力。尽管将校正曲线外推至水压的负值是合理的,但是评估与土壤中单次电势相关的不确定性水平仍然很有趣。为此,分析了一组统计上具有代表性的粘土样品的重量水含量和基质势的数据,这些样品经过精心制备并以与初始条件相同的方式压实。本文介绍了此练习的详细信息和结果,以及对数据的统计处理。

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