Solar cycle influence on troposphere and middle atmosphere via ozone layer in the presence of planetary waves: Simulation with ARM

被引:11
作者
Krivolutsky, A. A. [1 ]
Cherepanova, L. A. [1 ]
Dement'eva, A. V. [1 ]
机构
[1] Cent Aerol Observ Rosgidromet, Dolgoprudnyi, Russia
基金
俄罗斯科学基金会;
关键词
global circulation; UV solar cycle; wave-like response to solar cycle; MODEL;
D O I
10.1002/2015JA021363
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Global circulation model of the Troposphere-Middle Atmosphere-Lower Thermosphere ARM (Atmospheric Research Model) is used to simulate the thermal and wind response to solar cycle-induced UV variations. ARM covers altitudes from 1 to 135km and has corresponding spatial resolution: 1km in altitude; 11.25 degrees in longitude; 5 degrees in latitude. Internal Gravity Waves parameterization and planetary waves (PWs) structure on the basis of observations are determined at the lower boundary of the model. Changes in UV radiation, which is absorbed by ozone and molecular oxygen, are introduced into the model to find the corresponding global wind and temperature response. Stationary PWs with zonal wave numbers 1-3 are included at lower boundary in model runs. The simulations show that atmospheric response to solar cycle has a visible nonzonal character with the amplitude of about 5K in the troposphere for the winter season. The effect is rather smaller for summer due to the trapping PWs at lower altitudes. So, in accordance with the results of simulations, the link between the solar UV variability and the middle and low atmosphere strongly depends on the ozone and PWs activity.
引用
收藏
页码:8298 / 8306
页数:9
相关论文
共 27 条
[11]   The effects of solar variability on the Earth's climate [J].
Haigh, JD .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2003, 361 (1802) :95-111
[12]   An influence of solar spectral variations on radiative forcing of climate [J].
Haigh, Joanna D. ;
Winning, Ann R. ;
Toumi, Ralf ;
Harder, Jerald W. .
NATURE, 2010, 467 (7316) :696-699
[13]   Solar signals in CMIP-5 simulations: the ozone response [J].
Hood, L. L. ;
Misios, S. ;
Mitchell, D. M. ;
Rozanov, E. ;
Gray, L. J. ;
Tourpali, K. ;
Matthes, K. ;
Schmidt, H. ;
Chiodo, G. ;
Thieblemont, R. ;
Shindell, D. ;
Krivolutsky, A. .
QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2015, 141 (692) :2670-2689
[14]   The Surface Climate Response to 11-Yr Solar Forcing during Northern Winter: Observational Analyses and Comparisons with GCM Simulations [J].
Hood, Lon ;
Schimanke, Semjon ;
Spangehl, Thomas ;
Bal, Sourabh ;
Cubasch, Ulrich .
JOURNAL OF CLIMATE, 2013, 26 (19) :7489-7506
[15]   The Lower-Stratospheric Response to 11-Yr Solar Forcing: Coupling to the Troposphere-Ocean Response [J].
Hood, Lon L. ;
Soukharev, Boris E. .
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2012, 69 (06) :1841-1864
[16]  
Hurrell J.W., 1998, Meteor. Monogr. Amer. Meteor. Soc, V49, P1, DOI DOI 10.1007/978-1-935704-10-2_1
[17]   SIMULATION OF GRAVITY-WAVE EFFECTS UNDER SOLSTICE CONDITIONS USING A 3-D CIRCULATION MODEL OF THE MIDDLE ATMOSPHERE [J].
JAKOBS, HJ ;
BISCHOF, M ;
EBEL, A ;
SPETH, P .
JOURNAL OF ATMOSPHERIC AND TERRESTRIAL PHYSICS, 1986, 48 (11-12) :1203-1223
[18]   Dynamical response of the middle atmosphere to solar proton event of July 2000: Three-dimensional model simulations [J].
Krivolutsky, A. A. ;
Klyuchnikova, A. V. ;
Zakharov, G. R. ;
Vyushkova, T. Yu. ;
Kuminov, A. A. .
PARTICLE ACCELERATION, SPACE PLASMA PHYSICS, SOLAR RADIATION AND THE EARTH'S ATMOSPHERE AND CLIMATE, 2006, 37 (08) :1602-1613
[19]   The three-dimensional photochemical model CHARM. Incorporation of solar activity [J].
Krivolutsky, A. A. ;
V'yushkova, T. Yu. ;
Cherepanova, L. A. ;
Kukoleva, A. A. ;
Repnev, A. I. ;
Banin, M. V. .
GEOMAGNETISM AND AERONOMY, 2015, 55 (01) :59-88
[20]  
Krivolutsky A. A., 2015, GEOMAGN AER IN PRESS