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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Equatorial Kelvin wave signatures in ozone profile measurements from Global Ozone Monitoring Experiment (GOME)
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Equatorial Kelvin wave signatures in ozone profile measurements from Global Ozone Monitoring Experiment (GOME)

机译:全球臭氧监测实验(HOME)中臭氧剖面测量中的赤道开尔文波特征

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摘要

This study investigates the ability to derive height-resolved information on equatorial Kelvin wave activity from three different Global Ozone Monitoring Experiment (GOME) ozone profile data sets. The ozone profiles derived using the Ozone Profile Retrieval Algorithm (OPERA) based on optimal estimation and the Neural Network Ozone Retrieval System (NNORSY) both show Kelvin wave signals in agreement with previously identified signals in the GOME total ozone columns. However, because of the inadequate vertical resolution, these two data sets are not able to resolve the vertical structure of the Kelvin wave activity. The third data set, consisting of assimilated OPERA ozone profiles, does provide height-resolved information on Kelvin wave activity that is consistent with results from the analysis of GOME total ozone columns and ECMWF Re-Analysis (ERA-40) temperature data. Largest Kelvin-wave-induced perturbations of up to 0.69 DU/km coincide with the maximum vertical gradient in ozone around 35 hPa and show an in-phase relationship with temperature perturbations in ERA-40 as expected from theoretical considerations. These results indicate that the ozone perturbations in the lower stratosphere and in the total column of ozone are transport related. Between 10 and 1 hPa, large Kelvin-wave-induced fluctuations in ozone mixing ratio are present that, however, because of their small contribution to the total column, do not constitute a large contribution to the total ozone column perturbations. The ozone perturbations between 10 and 1 hPa show an out-of-phase relationship with temperature perturbations in ERA-40, indicating that the perturbations can either be caused by transport effects or photochemical influences.
机译:这项研究调查了从三个不同的全球臭氧监测实验(GOME)臭氧剖面数据集中获得有关赤道开尔文波活动的高度分辨信息的能力。使用基于最佳估计的臭氧轮廓检索算法(OPERA)和神经网络臭氧检索系统(NNORSY)得出的臭氧轮廓都显示开尔文波信号,这与先前在GOME总臭氧栏中确定的信号一致。但是,由于垂直分辨率不足,这两个数据集无法解析开尔文波活动的垂直结构。第三个数据集由同化的OPERA臭氧剖面组成,确实提供了有关Kelvin波活动的高度分辨信息,该信息与GOME总臭氧柱分析和ECMWF重新分析(ERA-40)温度数据的结果一致。开尔文波引起的最大扰动高达0.69 DU / km,与臭氧在35 hPa处的最大垂直梯度一致,并且从理论上可以预期,与ERA-40中的温度扰动呈同相关系。这些结果表明,平流层下部和总臭氧层中的臭氧扰动与运输有关。在10和1 hPa之间,存在开尔文波引起的臭氧混合比大波动,但是,由于它们对总色谱柱的贡献较小,因此对臭氧总扰动的贡献并不大。在10和1 hPa之间的臭氧扰动与ERA-40中的温度扰动显示出异相关系,表明该扰动可能是由传输效应或光化学效应引起的。

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