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HUMIDITY MEASUREMENTS IN COLD AND HUMID ENVIRONMENTS

机译:寒冷潮湿环境中的湿度测量

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Recent studies have shed new light on humidity conditions in the polar atmospheric boundary layer, and cast doubt on the reliability of humidity measurements above the frost point humidity. These issues are addressed herein by considering the processes that affect humidity and its measurement in cold climate conditions and by analyzing observations from two sites, at which the relative humidity is frequently above 100% at sub-freezing temperatures, as shown by repeatedly observed in-cloud icing events. Humidity measurements were made at these two sites by the commonly used Vaisala HMP35 probe and HMP233 capacitance probes respectively and simultaneously by the same manufacturer's HMP243 probe that determines the frost point by a heated capacitance sensor. The results confirm that the relative humidity is frequently well above the frost point, both due to radiative cooling and to the advection of moist air, and that the conventional humidity measurements are unable to detect these events. Furthermore, after such events, the iced sensors show too high a humidity. The false values occur due to ice growth on the probe and cannot be corrected by any algorithm. Our results indicate that these problems, inherent to conventional humidity measurements in cold and humid environments, are avoided by the use of HMP243, which has a heated humidity probe.
机译:最近的研究为极地大气边界层的湿度条件提供了新的思路,并对霜点湿度以上湿度测量的可靠性提出了质疑。通过考虑影响湿度的过程及其在寒冷气候条件下的测量结果,并通过分析两个站点的观测值来解决这些问题,这两个站点在低于冰点的温度下相对湿度通常高于100%,云冰事件。分别通过常用的Vaisala HMP35探头和HMP233电容探头在这两个位置进行湿度测量,并同时由同一制造商的HMP243探头进行湿度测量,该探头通过加热的电容传感器确定霜点。结果证实,由于辐射冷却和潮湿空气的平流,相对湿度通常远高于霜点,并且传统的湿度测量无法检测到这些事件。此外,在此类事件之后,结冰的传感器显示湿度过高。错误值是由于探头上的冰块生长而产生的,无法通过任何算法进行校正。我们的结果表明,使用带有加热湿度探头的HMP243可以避免在寒冷和潮湿环境中常规湿度测量固有的这些问题。

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