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Effect of effective saturation and ceramic cup properties on the response time of tensiometers

机译:有效饱和度和陶瓷杯性能对张力计响应时间的影响

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In recent years, more studies have been focusing on the transient behaviors of the movement of soil water and changes in matric potential, which require the measurement of the rapid changes in matric potential or capillary pressure. Because of the delayed response, the value of the matric potential measured using a tensiometer may not precisely reflect the actual matric potential during a transient condition. We performed a series of experiments to analyze the effect of grain size, effective saturation, and the hydraulic conductivities of ceramic cup and porous media on the response time of a tensiometer. The outcomes suggested that a decrease of hydraulic conductivity of the ceramic cup significantly increases the response time. Moreover, the response time measured under unsaturated conditions did not follow an ideal exponential decay. This finding was consistent with the existing theories, based on which, we proposed three models to describe the time-varied response function. These models were applied to correct the measured manic potential for dynamic water retention curve (WRC), and the findings were compared with those of other existing methods used for measuring the matric potential. We found that the incorporation of the theory of response time significantly reduced the discrepancy between the matric potential measured using two ceramic cups with different response times during dynamic drainage. We concluded that the delayed response of a tensiometer can have a significant effect on the measurement of the transient matric potential or capillary pressure and can be corrected using response time equations.
机译:近年来,更多的研究一直专注于土壤水运动的瞬态行为和原木潜力的变化,这需要测量毛细管电位或毛细管压力的快速变化。由于延迟响应,使用张力计测量的Matric电位的值可能在瞬态条件下可能无法精确地反映实际的Matric电位。我们进行了一系列实验,以分析晶粒尺寸,有效饱和度和陶瓷杯和多孔介质的液压传导性在张力计的响应时间上的影响。结果表明,陶瓷杯的液压导电性降低显着增加了响应时间。此外,在不饱和条件下测量的响应时间不遵循理想的指数衰减。这一发现与现有理论一致,基于哪些理论,我们提出了三种模型来描述时间变化的响应函数。应用这些模型以校正测量的动态水保留曲线(WRC)的测量躁狂电位,并将研究结果与用于测量Matric电位的其他现有方法进行比较。我们发现,结合响应时间理论显着降低了使用两个陶瓷杯在动态排水期间使用不同响应时间测量的Matric电位之间的差异。我们得出结论,张力计的延迟响应可以对瞬态测量瞬态测量潜力或毛细管压力产生显着影响,并且可以使用响应时间方程来校正。

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