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Uncertainty Analysis in Humidity Measurements by the Psychrometer Method

机译:用干湿法测量湿度的不确定度分析

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摘要

The most common and cheap indirect technique to measure relative humidity is by using psychrometer based on a dry and a wet temperature sensor. In this study, the measurement uncertainty of relative humidity was evaluated by this indirect method with some empirical equations for calculating relative humidity. Among the six equations tested, the Penman equation had the best predictive ability for the dry bulb temperature range of 15–50 °C. At a fixed dry bulb temperature, an increase in the wet bulb depression increased the error. A new equation for the psychrometer constant was established by regression analysis. This equation can be computed by using a calculator. The average predictive error of relative humidity was <0.1% by this new equation. The measurement uncertainty of the relative humidity affected by the accuracy of dry and wet bulb temperature and the numeric values of measurement uncertainty were evaluated for various conditions. The uncertainty of wet bulb temperature was the main factor on the RH measurement uncertainty.
机译:测量相对湿度的最常见,最便宜的间接技术是使用基于干湿传感器的干湿计。在这项研究中,相对湿度的测量不确定度通过这种间接方法与一些计算相对湿度的经验方程式进行了评估。在测试的六个方程中,Penman方程对于15–50°C的干球温度范围具有最佳的预测能力。在固定的干球温度下,湿球凹陷的增加会增加误差。通过回归分析建立了一个干湿计常数的新方程。可以使用计算器来计算该方程式。通过这个新方程式,相对湿度的平均预测误差<0.1%。在各种条件下,评估了相对湿度的测量不确定度,该相对湿度的测量不确定度受干球温度和湿球温度的影响以及测量不确定度的数值。湿球温度的不确定性是影响RH测量不确定度的主要因素。

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