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Correction of Thermocouple Psychrometer Readings for the Interaction of Temperature and Actual Water Potential

机译:校正温度和实际水势相互作用的热电偶干湿表读数

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The standard method of temperature correction for a thermocouple psychrometer only yields satisfactory results for a limited range of water potential and temperature. Contrary to assumptions in standard practices, there is an interaction between the actual water potential under measurement and the temperature correction. Fortunately, the errors associated with ignoring this interaction are often small, and data are presented here that permit an assessment of whether the error is within acceptable limits under specific experimental conditions. More elaborate algorithms are given that can be used more robustly across a wide range of measurement conditions if needed. The temperature responses of two commonly used commercial psychrometers were examined, and it was found that this interaction resulted in model-specific correction algorithms. More specifically, it was found that the frequently made assumption of a correction factor that changes linearly with temperature is a satisfactory approximation across a range of at least 15 to 35?°C. However, it was also found that the slope describing how this correction factor changes with temperature itself changes as a function of the actual water potential being measured. The details and magnitude of this effect were model specific.
机译:对于热电偶干湿计的温度校正的标准方法仅在有限的水势和温度范围内产生令人满意的结果。与标准实践中的假设相反,在测量的实际水势与温度校正之间存在相互作用。幸运的是,与忽略此相互作用相关的误差通常很小,并且在此提供的数据可以评估该误差在特​​定实验条件下是否在可接受的范围内。给出了更详尽的算法,如果需要,可以在各种测量条件下更强大地使用它们。检查了两种常用的商业干湿计的温度响应,发现这种相互作用导致了特定于模型的校正算法。更具体地说,发现在至少15至35℃的范围内,经常假定校正因子随温度线性变化是令人满意的近似值。然而,还发现描述该校正因子如何随温度本身变化的斜率随所测量的实际水势而变化。这种影响的细节和程度是特定于模型的。

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