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Validation of MIPAS IMK/IAA temperature, water vapor, and ozone profiles with MOHAVE-2009 campaign measurements

机译:通过MOHAVE-2009活动测量验证MIPAS IMK / IAA温度,水蒸气和臭氧剖面

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MIPAS observations of temperature, water vapor, and ozone in October 2009 as derived with the scientific level-2 processor run by Karlsruhe Institute of Technology (KIT), Institute for Meteorology and Climate Research (IMK) and CSIC, Instituto de Astrofísica de Andalucía (IAA) and retrieved from version 4.67 level-1b data have been compared to co-located field campaign observations obtained during the MOHAVE-2009 campaign at the Table Mountain Facility near Pasadena, California in October 2009. The MIPAS measurements were validated regarding any potential biases of the profiles, and with respect to their precision estimates. The MOHAVE-2009 measurement campaign provided measurements of atmospheric profiles of temperature, water vapor/relative humidity, and ozone from the ground to the mesosphere by a suite of instruments including radiosondes, ozonesondes, frost point hygrometers, lidars, microwave radiometers and Fourier transform infra-red (FTIR) spectrometers. For MIPAS temperatures (version V4O_T_204), no significant bias was detected in the middle stratosphere; between 22 km and the tropopause MIPAS temperatures were found to be biased low by up to 2 K, while below the tropopause, they were found to be too high by the same amount. These findings confirm earlier comparisons of MIPAS temperatures to ECMWF data which revealed similar differences. Above 12 km up to 45 km, MIPAS water vapor (version V4O_H2O_203) is well within 10% of the data of all correlative instruments. The well-known dry bias of MIPAS water vapor above 50 km due to neglect of non-LTE effects in the current retrievals has been confirmed. Some instruments indicate that MIPAS water vapor might be biased high by 20 to 40% around 10 km (or 5 km below the tropopause), but a consistent picture from all comparisons could not be derived. MIPAS ozone (version V4O_O3_202) has a high bias of up to +0.9 ppmv around 37 km which is due to a non-identified continuum like radiance contribution. No further significant biases have been detected. Cross-comparison to co-located observations of other satellite instruments (Aura/MLS, ACE-FTS, AIRS) is provided as well.
机译:MIPAS于2009年10月对温度,水蒸气和臭氧的观测结果,该观测结果是由卡尔斯鲁厄理工学院(KIT),气象与气候研究所(IMK)和CSIC,安达卢西亚天文学研究所(CSIC)运行的科学2级处理器得出的。 IAA)和从4.67版的1b版本数据中获取的数据已与2009年10月在加利福尼亚州帕萨迪纳附近的桌山工厂在MOHAVE-2009运动期间在同一地点进行的野外运动观测结果进行了比较。对MIPAS的测量值进行了任何潜在偏差的验证轮廓及其精度估算。 MOHAVE-2009测量活动通过一套包括无线电探空仪,臭氧探空仪,霜点湿度计,激光雷达,微波辐射计和傅里叶变换红外光谱仪在内的仪器,对从地面到中层大气的温度,水蒸气/相对湿度和臭氧的大气剖面进行了测量。 -红色(FTIR)光谱仪。对于MIPAS温度(版本V4O_T_204),在平流层中层没有检测到明显的偏差。在22 km和对流层顶之间,发现MIPAS温度偏低了2 K,而在对流层顶以下,发现它们的温度偏高了相同数量。这些发现证实了MIPAS温度与ECMWF数据的早期比较,揭示了相似的差异。从12 km到45 km,MIPAS水蒸气(版本V4O_H2O_203)在所有相关仪器数据的10%之内。已经证实,由于忽略了当前检索中的非LTE效应,在50 km以上的MIPAS水蒸气存在着众所周知的干偏。一些仪器表明,MIPAS的水蒸气在10 km(或对流层顶以下5 km)附近可能偏高20%至40%,但无法从所有比较中得出一致的图景。 MIPAS臭氧(V4O_O3_202版本)在37公里处具有高达+0.9 ppmv的高偏差,这是由于未确定的连续性(例如辐射)所致。尚未发现进一步的明显偏差。还提供了对其他卫星仪器(Aura / MLS,ACE-FTS,AIRS)的同地观测的交叉比较。

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