Mesospheric Water Vapor From SABER as a Tracer for the Residual Mean Circulation During SSW Events

被引:1
作者
Zhang, Jiarong [1 ]
Oberheide, Jens [1 ]
Pedatella, Nicholas M. [2 ]
Koushik, Neelakantan [3 ]
机构
[1] Clemson Univ, Dept Phys & Astron, Clemson, SC 29634 USA
[2] Natl Ctr Atmospher Res, High Altitude Observ, Boulder, CO USA
[3] Vikram Sarabhai Space Ctr, Space Phys Lab, Thiruvananthapuram, India
基金
美国国家科学基金会;
关键词
mesospheric water vapor; SABER version 2; 07; residual mean meridional circulation; sudden stratospheric warming; Lagrangian trajectories; SD-WACCM_X & WACCMX plus DART; GENERAL-CIRCULATION; MIDDLE ATMOSPHERE; STRATOSPHERE; MODEL; TRANSPORT; DESCENT; WAVES; PARAMETERIZATION; THERMOSPHERE; BREAKING;
D O I
10.1029/2023JD039526
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The sparse wind observations and reanalysis winds in the mesosphere make it challenging to accurately determine the residual mean meridional circulation (MMC). As winds distribute tracers, an alternative approach is to utilize long-lived trace species such as water vapor (H2O). The recently released H2O data from Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) version 2.07, combined with simulations by the Whole Atmosphere Community Climate Model eXtension with specified dynamics (SD-WACCM-X) and with the Data Assimilation Research Testbed (WACCMX + DART), provide an opportunity to assess the accuracy of using H2O isopleths to derive the vertical component of the residual MMC during the 2009 sudden stratospheric warming (SSW) event. In winter, the impact of photochemistry and diffusion on the distribution of mesospheric H2O is negligible compared to advective processes. H2O poleward of 70(degrees)N accurately captures the anomalous ascent that occurs a few days prior to the onset of the SSW and the subsequent descent. The derived vertical velocity in SD-WACCM-X and WACCMX + DART is qualitatively consistent with SABER observations. However, the derivation of vertical motion from isopleth analysis has limitations at the beginning of 2009 when the meridional transport is stronger than the vertical transport. While measuring winds in the mesosphere is challenging, satellite observations of mesospheric H2O prove to be an effective dynamical tracer during time periods characterized by strong vertical coupling.
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页数:17
相关论文
共 62 条
[1]   Future trends in stratosphere-to-troposphere transport in CCMI models [J].
Abalos, Marta ;
Orbe, Clara ;
Kinnison, Douglas E. ;
Plummer, David ;
Oman, Luke D. ;
Joeckel, Patrick ;
Morgenstern, Olaf ;
Garcia, Rolando R. ;
Zeng, Guang ;
Stone, Kane A. ;
Dameris, Martin .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (11) :6883-6901
[2]  
Anderson JL, 2001, MON WEATHER REV, V129, P2884, DOI 10.1175/1520-0493(2001)129<2884:AEAKFF>2.0.CO
[3]  
2
[4]  
Andrews D., 1987, MIDDLE ATMOSPHERE DY
[5]  
ANDREWS DG, 1976, J ATMOS SCI, V33, P2031, DOI 10.1175/1520-0469(1976)033<2031:PWIHAV>2.0.CO
[6]  
2
[7]   A multi tracer analysis of thermosphere to stratosphere descent triggered by the 2013 Stratospheric Sudden Warming [J].
Bailey, S. M. ;
Thurairajah, B. ;
Randall, C. E. ;
Holt, L. ;
Siskind, D. E. ;
Harvey, V. L. ;
Venkataramani, K. ;
Hervig, M. E. ;
Rong, P. ;
Russell, J. M., III .
GEOPHYSICAL RESEARCH LETTERS, 2014, 41 (14) :5216-5222
[8]   Sudden Stratospheric Warmings [J].
Baldwin, Mark P. ;
Ayarzaguena, Blanca ;
Birner, Thomas ;
Butchart, Neal ;
Butler, Amy H. ;
Charlton-Perez, Andrew J. ;
Domeisen, Daniela I. V. ;
Garfinkel, Chaim I. ;
Garny, Hella ;
Gerber, Edwin P. ;
Hegglin, Michaela I. ;
Langematz, Ulrike ;
Pedatella, Nicholas M. .
REVIEWS OF GEOPHYSICS, 2021, 59 (01)
[9]  
Banks P. M., 1973, AERONOMY
[10]  
Brasseur G. P., 2005, Dynamics and transport, P51