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Radiosonde humidity corrections and potential Atmospheric Infrared Sounder moisture accuracy

机译:探空仪湿度校正和潜在的大气红外测深仪湿度精度

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摘要

Although there are a number of sources of radiosonde data for validation of observations from other atmospheric sensors, routine operational sondes remain the main source for a large volume of data. In this study radiosonde moisture profiles are renormalized using Global Positioning System (GPS) Integrated Precipitable Water (IPW) vapor. The GPS-adjusted radiosonde humidity profiles are then compared to the Atmospheric Infrared Sounder (AIRS) measurements. As a check, AIRS measurements are also compared with unadjusted radiosonde moisture profiles. It is shown that the GPS-adjusted values are in better agreement with the AIRS measurements. On the basis of this result, the GPS-adjusted radiosondes are used to assess the AIRS potential accuracy. This is valid because the errors in the AIRS measurements and the adjustments are independent. The GPS-based renormalization of radiosonde humidity measurements produced a significant improvement in the agreement between AIRS and Vaisala RS 57 H type radiosondes in the lower troposphere, where much of the atmospheric water vapor resides. The adjustment also resulted in improved agreement between AIRS and radiosonde IPW estimates. The results showed a dayight bias in the radiosonde values as compared to the GPS and the AIRS values, demonstrating the potential use of the technique for evaluating and correcting this bias. Established corrections for humidity errors also have been applied to some operational radiosonde observations, specifically the published temperature correction developed for the Vaisala RS80 H type radiosonde. This correction produced a much smaller effect than the GPS adjustment.
机译:尽管有许多探空仪数据来源可用于验证来自其他大气传感器的观测结果,但常规的操作探空仪仍然是大量数据的主要来源。在这项研究中,使用全球定位系统(GPS)集成的可沉淀水(IPW)蒸气对探空仪的湿度剖面进行了归一化处理。然后将GPS调整后的探空仪湿度曲线与大气红外测深仪(AIRS)测量值进行比较。作为检查,还将AIRS测量值与未经调整的探空仪湿度曲线进行比较。结果表明,GPS调整后的值与AIRS测量值更加吻合。根据此结果,使用GPS调整后的探空仪评估AIRS的潜在精度。这是有效的,因为AIRS测量和调整中的误差是独立的。基于GPS的无线电探空仪湿度测量值的重新归一化极大地改善了AIRS与低空对流层(大部分大气水汽存在)中的Vaisala RS 57 H型无线电探空仪之间的协议。该调整还改善了AIRS与无线电探空仪IPW估算之间的一致性。结果表明,与GPS和AIRS值相比,无线电探空仪值存在昼/夜偏差,这表明该技术可用于评估和校正该偏差。已建立的湿度误差校正也已应用于某些无线电探空仪的观测中,特别是针对Vaisala RS80 H型探空仪开发的已发布温度校正。这种校正产生的效果比GPS调整要小得多。

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