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Airborne Fourier transform spectrometer observations in support of EOS Aura validation

机译:机载傅里叶变换光谱仪观测结果支持EOS Aura验证

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摘要

Nearly coincident observations of HNO3, HCl, N2O, and H2O in the vicinity of the northern polar vortex during the NASA Polar Aura Validation Experiment (PAVE) in January and February 2005 have shown reasonably good agreement between aircraft-borne infrared spectrometer results and results from High Resolution Dynamics Limb Sounder (HIRDLS), Microwave Limb Sounder (MLS), and Tropospheric Emission Spectrometer (TES) instruments aboard the EOS Aura satellite. Mixing ratio profile and column results show that special attention must be given to retrievals that may be disturbed by the dynamics and chemical processing of the polar vortex. Largest differences occur on days when observations were made in regions of the vortex with large gradients in wind and potential vorticity, and the differences were especially noticeable in results for HNO3 and HCl, whose profiles may be dramatically changed by vortex activity. The mean difference between coincident column observations by MLS and the Fourier transform spectrometer (FTS) is 2.4%, VMR profile amounts generally are in good agreement between the satellite observations where they are available. The average difference between coincident HCl column observations by MLS and the FTS is 4.6%.
机译:在2005年1月和2005年2月的NASA极地光环验证实验(PAVE)期间,在北极涡附近对HNO3,HCl,N2O和H2O的近乎一致的观测表明,机载红外光谱仪的结果与EOS Aura卫星上的高分辨率动力学肢体发声器(HIRDLS),微波肢体发声器(MLS)和对流层发射光谱仪(TES)仪器。混合比分布图和色谱柱结果表明,必须特别注意可能受到极性涡旋的动力学和化学处理干扰的检索。当在风和潜在涡度大的涡旋区域进行观测时,最大的差异发生在几天,HNO3和HCl的结果差异尤其明显,HNO3和HCl的分布可能会因涡旋活动而发生显着变化。 MLS和傅立叶变换光谱仪(FTS)的重合柱观测值之间的平均差为2.4%,VMR轮廓量通常与可用的卫星观测值之间具有很好的一致性。 MLS和FTS同时观测到的HCl柱之间的平均差为4.6%。

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