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首页> 外文期刊>Journal of atmospheric and oceanic technology >Performance of the Vaisala RS80A/H and RS90 Humicap Sensors and the Meteolabor 'Snow White' Chilled-Mirror Hygrometer in Paramaribo, Suriname
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Performance of the Vaisala RS80A/H and RS90 Humicap Sensors and the Meteolabor 'Snow White' Chilled-Mirror Hygrometer in Paramaribo, Suriname

机译:苏里南帕拉马里博的Vaisala RS80A / H和RS90 Humicap传感器和Meteolabor'Snow White'冷镜湿度计的性能

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In climate research there is a strong need for accurate observations of water vapor in the upper atmosphere. Radiosoundings provide relative humidity profiles but the accuracy of many routine instruments is notoriously inadequate in the cold upper troposphere. In this study results from a soundings program executed in Paramaribo, Suriname (5.8°N, 55.2°W), are presented. The aim of this program was to compare the performance of different humidity sensors in the upper troposphere in the Tropics and to test different bias corrections suggested in the literature. The payload of each sounding consisted of a chilled-mirror "Snow White" sensor from Meteolabor AG, which was used as a reference, and two additional sensors from Vaisala, that is, either the RS80A, the RS80H, or the RS90. In total 37 separate soundings were made. For the RS80A a clear, dry bias of between -4% and -8% RH is found in the lower troposphere compared to the Snow White observation, confirming the findings in previous studies. A mean dry bias was found in the upper troposphere, which could be effectively corrected. The RS80H sensor shows a significant wet bias of 2%-5% in RH in the middle and upper troposphere, which has not been reported before. Comparing observations with RS80H sensors of different ages gives no indication of sensor aging or sensor contamination. It is therefore concluded that the plastic cover introduced by Vaisala to avoid sensor contamination is effective. Finally, the RS90 sensor yields a small but significant wet bias of 2%-3% below 7-km altitude. The time-lag error correction from Miloshevich et al. was applied to the Vaisala data, which resulted in an increased variability in the relative humidity profile above 9- (RS80A), 8- (RS80H), and 11-km (RS90) altitude, respectively, which is in better agreement with the Snow White data. The averaged Snow White profile is compared with the average profiles of relative humidity from the European Centre for Medium-Range Weather Forecasts (ECMWF). No significant bias is found in either the analyses or the forecasts. The correlation coefficient for the Snow White and ECMWF data between 200 and 800 hPa was 0.66 for the 36-h forecast and 0.77 for the analysis.
机译:在气候研究中,强烈需要对高层大气中的水蒸气进行精确观测。放射性声音提供了相对湿度曲线,但是众所周知,许多常规仪器的精度在对流层较冷的地方不足。在这项研究中,给出了在苏里南帕拉马里博执行的一个测深程序(5.8°N,55.2°W)的结果。该程序的目的是比较热带对流层上不同湿度传感器的性能,并测试文献中建议的不同偏差校正。每种探测的有效载荷均由Meteolabor AG的冷镜“ Snow White”传感器(用作参考)和Vaisala的两个附加传感器(即RS80A,RS80H或RS90)组成。总共进行了37次单独的测深。对于RS80A,与“白雪公主”观测值相比,在对流层下部发现了RH介于-4%和-8%之间的清晰的干偏差,这证实了先前研究的发现。在对流层上部发现了平均干偏,可以对其进行有效纠正。 RS80H传感器在对流层中层和高层对流层的RH处显示出2%-5%的显着湿偏度,这以前没有报道过。将观察结果与不同年龄的RS80H传感器进行比较,没有迹象表明传感器老化或传感器污染。因此得出结论,维萨拉为避免传感器污染而引入的塑料盖是有效的。最终,RS90传感器在7公里以下的高度产生2%-3%的微小但明显的湿偏。 Miloshevich等人的时滞误差校正。应用于维萨拉数据,分别导致相对湿度曲线在9-(RS80A),8(RS80H)和11-km(RS90)高度以上的变异性增加,这与雪域的分布更加一致白色数据。将平均的“白雪公主”剖面与欧洲中距离天气预报中心(ECMWF)的相对湿度的平均剖面进行比较。在分析或预测中均未发现明显偏差。对于200 h和800 hPa之间的Snow White和ECMWF数据,在36小时的预报中的相关系数是0.66,在分析中的相关系数是0.77。

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