Comparative terrestrial planet thermospheres 3. Solar cycle variation of global structure and winds at solstices

被引:202
作者
Bougher, SW [1 ]
Engel, S
Roble, RG
Foster, B
机构
[1] Univ Arizona, Lunar & Planetary Lab, Tucson, AZ 85721 USA
[2] Natl Ctr Atmospher Res, High Altitude Observ, Boulder, CO 80307 USA
关键词
D O I
10.1029/1999JE001232
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The comparison of planetary upper atmospheres using global databases has entered a new era with the advent of recent aerobraking measurements of the Mars thermosphere [e.g., Keating, et al., 1998a]. The present maturity of available modeling capabilities also permits us to contrast the Earth and Mars thermosphere structures, winds, and controlling processes using global three-dimensional models [e.g., Bougher et al., 1999b]. This present effort focuses upon the comparison of the combined seasonal-solar cycle responses of the thermospheres of Earth and Mars using the National Center for Atmospheric Research (NCAR) Thermospheric General Circulation Model (TGCM) utility to address the coupled energetics, dynamics, and neutral-ion composition above similar to 100 km. Extreme thermospheric conditions are expected at solstices, thereby revealing the changing importance of fundamental physical processes controlling the Earth and Mars thermospheric structures and winds. Seasonal-solar cycle extremes in Mars exobase temperatures are calculated to range from 200 to 380 K, giving rise to maximum horizontal winds of nearly 215 to 400 mis. Corresponding extremes in Earth exobase temperatures are 700 to 1600 K, with rather small variations in global winds. The orbital eccentricities of Earth and Mars are also shown to drive substantial variations in their thermospheric temperatures. For Mars, dayside exobase temperatures vary by similar to 60 K (18%) from aphelion to perihelion during solar maximum conditions. Such large temperature variations strongly impact thermospheric densities and global winds. The corresponding Earth dayside temperatures also vary by 60-80 K between solstices. However, the percent temperature variation (5%) over the Earth's orbit and its overall impact on the thermospheric structure and winds are much smaller. Auroral activity may in fact obscure these orbital variations. Changing dust conditions throughout the Martian year modulate the aerosol heating of its lower atmosphere, yielding considerable variability in the height of the subsolar ionospheric peak about its observed seasonal trend (similar to 115-130 km). Significant further progress in the comparison of Earth and Mars thermospheric features and underlying processes must await expanded Mars global databases expected from Planet-B and Mars Express (2004-2005).
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收藏
页码:17669 / 17692
页数:24
相关论文
共 45 条
[1]  
BARTH CA, 1992, MARS, P1054
[2]  
BERTAUX JL, 1999, DYNAMO INT WORKSH CT
[3]   Mars Global Surveyor aerobraking: Atmospheric trends and model interpretation [J].
Bougher, S ;
Keating, G ;
Zurek, R ;
Murphy, J ;
Haberle, R ;
Hollingsworth, J ;
Clancy, RT .
MOON AND MARS, 1999, 23 (11) :1887-1897
[4]   Comparative terrestrial planet thermospheres 2. Solar cycle variation of global structure and winds at equinox [J].
Bougher, SW ;
Engel, S ;
Roble, RG ;
Foster, B .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 1999, 104 (E7) :16591-16611
[5]   COMPARATIVE TERRESTRIAL PLANET THERMOSPHERES .1. SOLAR-CYCLE VARIATION OF GLOBAL MEAN TEMPERATURES [J].
BOUGHER, SW ;
ROBLE, RG .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1991, 96 (A7) :11045-11055
[6]   MARS THERMOSPHERIC GENERAL-CIRCULATION MODEL - CALCULATIONS FOR THE ARRIVAL OF PHOBOS AT MARS [J].
BOUGHER, SW ;
DICKINSON, RE ;
ROBLE, RG ;
RIDLEY, EC .
GEOPHYSICAL RESEARCH LETTERS, 1988, 15 (13) :1511-1514
[7]   THE MARS THERMOSPHERE .2. GENERAL-CIRCULATION WITH COUPLED DYNAMICS AND COMPOSITION [J].
BOUGHER, SW ;
ROBLE, RG ;
RIDLEY, EC ;
DICKINSON, RE .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1990, 95 (B9) :14811-14827
[8]   Dust storm impacts on the Mars upper atmosphere [J].
Bougher, SW ;
Murphy, J ;
Haberle, RM .
PLANETARY ATMOSPHERES AND IONOSPHERES AND REFERENCE ATMOSPHERES, 1997, 19 (08) :1255-1260
[9]   MARS MESOSPHERE AND THERMOSPHERE COUPLING - SEMIDIURNAL TIDES [J].
BOUGHER, SW ;
FESEN, CG ;
RIDLEY, EC ;
ZUREK, RW .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 1993, 98 (E2) :3281-3295
[10]   CO2 COOLING IN TERRESTRIAL PLANET THERMOSPHERES [J].
BOUGHER, SW ;
HUNTEN, DM ;
ROBLE, RG .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 1994, 99 (E7) :14609-14622