Observations of Gravity Waves in the Middle Atmosphere of Mars

被引:9
作者
Saunders, William R. [1 ]
Person, Michael J. [2 ]
Withers, Paul [1 ,3 ]
机构
[1] Boston Univ, Dept Astron, 725 Commonwealth Ave, Boston, MA 02215 USA
[2] MIT, Dept Earth Atmospher & Planetary Sci, Cambridge, MA 02139 USA
[3] Boston Univ, Ctr Space Phys, Boston, MA 02215 USA
关键词
STELLAR OCCULTATION DATA; MARTIAN ATMOSPHERE; EPSILON-GEMINORUM; PLANETARY-ATMOSPHERES; MGS-TES; PLUTO; PROFILES; AIRBORNE;
D O I
10.3847/1538-3881/abf1ef
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Gravity waves are ubiquitous throughout the atmosphere of Mars. Their propagation and dissipation influence the circulation and thermal structure of the middle and upper atmosphere. Yet there have been few studies of gravity wave characteristics in the middle atmosphere, a region that is critical for their propagation from generation in the lower atmosphere to dissipation and associated exchanges of momentum and energy in the upper atmosphere. There have been few studies because few atmospheric profiles span the middle atmosphere with the kilometer-scale or smaller vertical resolution that is Required to characterize gravity waves. Here we report the characterization of gravity waves in the middle atmosphere using 12 high-resolution atmospheric density profiles. Four of these were acquired from a ground-based stellar occultation from 1976 that yielded immersion and emersion profiles on opposite sides of the planet, and the remaining eight were measured during atmospheric entry by landers and rovers. Predominant wavelengths were 3-14 km, and amplitudes were generally 0.8%-2.5%. Where static stability is large and positive, gravity waves grow efficiently. In other instances, static stability is not large and positive over a wide altitude range, and gravity wave amplitudes do not behave as neatly. These observations of gravity waves in the middle atmosphere of Mars can be used to test gravity wave parameterizations in large-scale general circulation models and to investigate predictions for how gravity wave propagation and dissipation influence the circulation and thermal structure of the middle and upper atmosphere.
引用
收藏
页数:21
相关论文
共 77 条
[1]  
Abel N. H., 1826, Journal fur die reine und angewandte Mathematik, V1826, P153, DOI DOI 10.1515/CRLL.1826.1.153
[2]   Vertical Wavenumber Spectra of Gravity Waves in the Martian Atmosphere Obtained from Mars Global Surveyor Radio Occultation Data [J].
Ando, Hiroki ;
Imamura, Takeshi ;
Tsuda, Toshitaka .
JOURNAL OF THE ATMOSPHERIC SCIENCES, 2012, 69 (09) :2906-2912
[3]  
Andrews D., 1987, INT GEOPHYS
[4]  
[Anonymous], 2013, An Introduction to Dynamic Meteorology, DOI [10.1016/B978-0-12-384866-6.00006-4, DOI 10.1016/B978-0-12-384866-6.00002-7]
[5]   The atmosphere of Mars as observed by InSight [J].
Banfield, Don ;
Spiga, Aymeric ;
Newman, Claire ;
Forget, Francois ;
Lemmon, Mark ;
Lorenz, Ralph ;
Murdoch, Naomi ;
Viudez-Moreiras, Daniel ;
Pla-Garcia, Jorge ;
Garcia, Raphael F. ;
Lognonne, Philippe ;
Karatekin, Ozgur ;
Perrin, Clement ;
Martire, Leo ;
Teanby, Nicholas ;
Hove, Bart Van ;
Maki, Justin N. ;
Kenda, Balthasar ;
Mueller, Nils T. ;
Rodriguez, Sebastien ;
Kawamura, Taichi ;
McClean, John B. ;
Stott, Alexander E. ;
Charalambous, Constantinos ;
Millour, Ehouarn ;
Johnson, Catherine L. ;
Mittelholz, Anna ;
Maattanen, Anni ;
Lewis, Stephen R. ;
Clinton, John ;
Staehler, Simon C. ;
Ceylan, Savas ;
Giardini, Domenico ;
Warren, Tristram ;
Pike, William T. ;
Daubar, Ingrid ;
Golombek, Matthew ;
Rolland, Lucie ;
Widmer-Schnidrig, Rudolf ;
Mimoun, David ;
Beucler, Eric ;
Jacob, Alice ;
Lucas, Antoine ;
Baker, Mariah ;
Ansan, Veronique ;
Hurst, Kenneth ;
Mora-Sotomayor, Luis ;
Navarro, Sara ;
Torres, Josefina ;
Lepinette, Alain .
NATURE GEOSCIENCE, 2020, 13 (03) :190-+
[6]  
Barnes JR, 2017, CAMB PLANET, P229
[7]   A PHOTOMETRIC OBSERVATION OF THE OCCULTATION OF SIGMA-ARIETIS BY JUPITER [J].
BAUM, WA ;
CODE, AD .
ASTRONOMICAL JOURNAL, 1953, 58 (04) :108-112
[8]   The state of Pluto's atmosphere in 2012-2013 [J].
Bosh, A. S. ;
Person, M. J. ;
Levine, S. E. ;
Zuluaga, C. A. ;
Zangari, A. M. ;
Gulbis, A. A. S. ;
Schaefer, G. H. ;
Dunham, E. W. ;
Babcock, B. A. ;
Davis, A. B. ;
Pasachoff, J. M. ;
Rojo, P. ;
Servajean, E. ;
Foerster, F. ;
Oswalt, T. ;
Batcheldor, D. ;
Bell, D. ;
Bird, P. ;
Fey, D. ;
Fulwider, T. ;
Geisert, E. ;
Hastings, D. ;
Keuhler, C. ;
Mizusawa, T. ;
Solenski, P. ;
Watson, B. .
ICARUS, 2015, 246 :237-246
[9]  
Chamberlain DM, 1997, PUBL ASTRON SOC PAC, V109, P1170
[10]   An intercomparison of ground-based millimeter, MGS TES, and Viking atmospheric temperature measurements: Seasonal and interannual variability of temperatures and dust loading in the global Mars atmosphere [J].
Clancy, RT ;
Sandor, BJ ;
Wolff, MJ ;
Christensen, PR ;
Smith, MD ;
Pearl, JC ;
Conrath, BJ ;
Wilson, RJ .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2000, 105 (E4) :9553-9571