Improved GOMOS/Envisat ozone retrievals in the upper troposphere and the lower stratosphere

被引:10
作者
Sofieva, Viktoria F. [1 ]
Ialongo, Iolanda [1 ]
Hakkarainen, Janne [1 ]
Kyrola, Erkki [1 ]
Tamminen, Johanna [1 ]
Laine, Marko [1 ]
Hubert, Daan [2 ]
Hauchecorne, Alain [3 ]
Dalaudier, Francis [3 ]
Bertaux, Jean-Loup [3 ]
Fussen, Didier [2 ]
Blanot, Laurent [4 ]
Barrot, Gilbert [4 ]
Dehn, Angelika [5 ]
机构
[1] Finnish Meteorol Inst, FIN-00101 Helsinki, Finland
[2] Royal Belgian Inst Space Aeron BIRA IASB, Brussels, Belgium
[3] UPMC Univ Paris 06, Univ Versailles St Quentin, CNRS INSU, LATMOS IPSL, F-78280 Guyancourt, France
[4] ACRI ST, Sophia Antipolis, France
[5] ESA ESRIN, Frascati, Italy
基金
芬兰科学院;
关键词
MESOSPHERIC SODIUM LAYER; BALLOON SONDE MEASUREMENTS; GOMOS DATA; OCCULTATION MEASUREMENTS; LIMB; PROFILES; CLIMATOLOGY; VALIDATION; ENVISAT; MIPAS;
D O I
10.5194/amt-10-231-2017
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Global Ozone Monitoring by Occultation of Stars (GOMOS) on board Envisat has performed about 440 000 nighttime occultations during 2002-2012. Self-calibrating measurement principle, good vertical resolution, excellent pointing accuracy, and the wide vertical range from the troposphere up to the lower thermosphere make GOMOS profiles interesting for different analyses. The GOMOS ozone data are of high quality in the stratosphere and the mesosphere, but the current operational retrieval algorithm (IPF v6) is not optimized for retrievals in the upper troposphere-lower stratosphere (UTLS). In particular, validation of GOMOS profiles against ozonesonde data has revealed a substantial positive bias (up to 100 %) in the UTLS region. The retrievals in the UTLS are challenging because of low signal-to-noise ratio and the presence of clouds. In this work, we discuss the reasons for the systematic uncertainties in the UTLS with the IPF v6 algorithm or its modifications based on simultaneous retrievals of several constituents using the full visible wavelength range. The main reason is high sensitivity of the UTLS retrieval algorithms to an assumed aerosol extinction model. We have developed a new ozone profile inversion algorithm for GOMOS data (ALGOM2s version 1.0), which is optimized in the UTLS and uses IPF v6 advantages in the middle atmosphere. The ozone retrievals in the whole altitude range from the troposphere to the lower thermosphere are performed in two steps, as in the operational algorithm: spectral inversion followed by the vertical inversion. The spectral inversion is enhanced by using a DOAS-type method at visible wavelengths for the UTLS region. This method uses minimal assumptions about the atmospheric profiles. The vertical inversion is performed as in IPF v6 with the Tikhonov-type regularization according to the target resolution. The validation of new retrieved ozone profiles with ozonesondes shows a dramatic reduction of GOMOS ozone biases in the UTLS. The new GOMOS ozone profiles are also in a very good agreement with measurements by MIPAS, ACE-FTS, and OSIRIS satellite instruments in the UTLS. It is also shown that the known geophysical phenomena in the UTLS ozone are well reproduced with the new GOMOS data.
引用
收藏
页码:231 / 246
页数:16
相关论文
共 50 条
[41]   Detailed structure of the tropical upper troposphere and lower stratosphere as revealed by balloon sonde observations of water vapor, ozone, temperature, and winds during the NASA TCSP and TC4 campaigns [J].
Selkirk, Henry B. ;
Voemel, Holger ;
Valverde Canossa, Jessica Maria ;
Pfister, Leonhard ;
Andres Diaz, Jorge ;
Fernandez, Walter ;
Amador, Jorge ;
Stolz, Werner ;
Peng, Grace S. .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2010, 115
[42]   The Mechanism of Scale Selection for Mixed Rossby-Gravity Waves in the Upper Troposphere and the Upper Stratosphere [J].
Maho, S. I. ;
Zagar, N. ;
Lunkeit, F. ;
Vasylkevych, S. .
GEOPHYSICAL RESEARCH LETTERS, 2024, 51 (23)
[43]   A Rotary Platform Mounted Doppler Lidar for Wind Measurements in Upper Troposphere and Stratosphere [J].
Zhao, Ming ;
Xie, Chenbo ;
Wang, Bangxin ;
Xing, Kunming ;
Chen, Jianfeng ;
Fang, Zhiyuan ;
Li, Lu ;
Cheng, Liangliang .
REMOTE SENSING, 2022, 14 (21)
[44]   Turbulence Parameters in the Troposphere-Lower Stratosphere Observed by Beijing MST Radar [J].
Chen, Ze ;
Tian, Yufang ;
Lue, Daren .
REMOTE SENSING, 2022, 14 (04)
[45]   Using networked Pandora observations to capture spatiotemporal changes in total column ozone associated with stratosphere-to-troposphere transport [J].
Robinson, J. ;
Kotsakis, A. ;
Santos, F. ;
Swap, R. ;
Knowland, K. E. ;
Labow, G. ;
Connors, V ;
Tzortziou, M. ;
Abuhassan, N. ;
Tiefengraber, M. ;
Cede, A. .
ATMOSPHERIC RESEARCH, 2020, 238 (238)
[46]   Climatology of Clear-Air Turbulence in Upper Troposphere and Lower Stratosphere in the Northern Hemisphere Using ERA5 Reanalysis Data [J].
Lee, Ju Heon ;
Kim, Jung-Hoon ;
Sharman, Robert D. ;
Kim, Joowan ;
Son, Seok-Woo .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2023, 128 (01)
[47]   Spatial Heterodyne Observations of Water (SHOW) vapour in the upper troposphere and lower stratosphere from a high altitude aircraft: Modelling and sensitivity analysis [J].
Langille, J. A. ;
Letros, D. ;
Zawada, D. ;
Bourassa, A. ;
Degenstein, D. ;
Solheim, B. .
JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2018, 209 :137-149
[48]   Ground-based water vapor raman lidar measurements up to the upper troposphere and lower stratosphere for long-term monitoring [J].
Leblanc, T. ;
McDermid, I. S. ;
Walsh, T. D. .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2012, 5 (01) :17-36
[49]   The ENSO and QBO Impact on Ozone Variability and Stratosphere-Troposphere Exchange Relative to the Subtropical Jets [J].
Olsen, Mark A. ;
Manney, Gloria L. ;
Liu, Junhua .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2019, 124 (13) :7379-7392
[50]   Dynamics of ENSO-driven stratosphere-to-troposphere transport of ozone over North America [J].
Albers, John R. ;
Butler, Amy H. ;
Langford, Andrew O. ;
Elsbury, Dillon ;
Breeden, Melissa L. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2022, 22 (19) :13035-13048