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Validation of humidity profiles obtained from SAPHIR, on-board Megha-Tropiques

机译:验证从SAP MIR车载Megha-Tropiques获得的湿度曲线

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The Megha-Tropiques, an Indo French mission, with four on-board payloads was launched in October 2011 to improve our understanding on hydrological cycle and radiation budget. The SAPHIR (Sondeur Atmospherique du Profil d'Humidite Intertropical par Radiometric), a sounder for profiling humidity, is a key payload and expected to play a major role in fulfilling the mission objectives. The present article focuses on the evaluation of SAPHIR-derived humidity profiles against a variety of reference datasets, like measurements from GPS radiosondes and ground-based microwave radiometer, reanalysis datasets and satellite retrievals. The data collected during July-November 2012 were employed to validate humidity profiles. A variety of colocations (matching the sampling volumes of radiosonde and SAPHIR) were employed for the validation against radiosondes, launched from Gadanki. The bias (SAPHIR-derived RH - reference RH) and the rms error are found to be small for near-nadir measurements than those far awayfrom the nadir. Further, the bias shows a clear height dependence with positive (negative) bias dominating in the lowest (uppermost) layers. The RH bias and rms errors are small (within 15%) in the middle layers, altitudes at which the sensitivity of SAPHIR channels is high. The comparisons with ECMWF interim reanalysis (ERA) and advanced infrared sounder (AIRS) data, used to extend the evaluation of SAPHIR data to the entire tropics, reveal strikingly similar spatial and vertical structure in RH bias.The vertical structure of RH bias is somewhat similar to that obtained with the radiosonde. Large biases are seen in regions adjacent to South America and Africa in the latitude band of 20°-30°S and large negative bias is seen along the Intertropical Convergence Zone. Possible reasons for such large biases in those regions are discussed.
机译:Megha-Tropiques是印度支派的Megha-Tropiques,于2011年10月发射,带有四个机载有效载荷,目的是增进我们对水文循环和辐射预算的了解。 SAPHIR(Humidite Interprofil d'Humidite大气辐射法国家气象局)是一种用于对湿度进行轮廓分析的测深仪,是一种重要的有效载荷,有望在实现任务目标中发挥重要作用。本文着重针对各种参考数据集评估SAPHIR衍生的湿度剖面,例如GPS探空仪和地面微波辐射计的测量结果,再分析数据集和卫星取回。 2012年7月至11月收集的数据用于验证湿度曲线。针对从加丹基(Gadanki)发射的无线电探空仪,采用了多种共置方式(匹配探空仪和SAPHIR的采样量)进行验证。发现在近天底测量时的偏差(SAPHIR得出的RH-参考RH)和均方根误差比远离天底的测量值小。此外,该偏压显示出明显的高度依赖性,其中正(负)偏压在最低(最上层)层中占优势。在中间层,SAPHIR通道的灵敏度较高的高度,RH偏差和均方根误差很小(在15%以内)。与ECMWF临时再分析(ERA)和高级红外测深仪(AIRS)数据进行的比较(用于将SAPHIR数据的评估扩展到整个热带)显示出RH偏向的空间和垂直结构非常相似。与无线电探空仪获得的结果相似。在南纬20°-30°S的南美洲和非洲附近的区域中看到较大的偏差,而在热带融合带中则看到较大的负偏差。讨论了这些区域中如此大的偏差的可能原因。

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