Global climate modeling of Saturn's atmosphere. Part II: Multi-annual high-resolution dynamical simulations

被引:32
|
作者
Spiga, Aymeric [1 ,2 ]
Guerlet, Sandrine [1 ]
Millour, Ehouarn [1 ]
Indurain, Mikel [1 ]
Meurdesoif, Yann [3 ]
Cabanes, Simon [1 ]
Dubos, Thomas [1 ]
Leconte, Jeremy [4 ]
Boissinot, Alexandre [1 ]
Lebonnois, Sebastien [1 ]
Sylvestre, Melody [1 ,5 ,6 ]
Fouchet, Thierry [6 ]
机构
[1] Sorbonne Univ, LMD, IPSL, CNRS,Ecole Polytech,ENS, Campus Pierre & Marie Curie BC99,4 Pl Jussieu, F-75005 Paris, France
[2] IUF, 1 Rue Descartes, F-75005 Paris, France
[3] Univ Paris Saclay, CNRS, Commissariat Energie Atom & Energies Alternat CEA, IPSL,LSCE, Campus CEA Orme des Merisiers, Saclay, France
[4] Univ Bordeaux, CNRS, LAB, B18N,Alle Geoffroy St Hilaire, F-33615 Pessac, France
[5] Univ Bristol, Sch Earth Sci, Wills Mem Bldg,Queens Rd, Bristol BS8 1RJ, Avon, England
[6] Univ Paris Diderot, Sorbonne Univ, Univ Paris Sci & Lettres PSL, CNRS,Observ Paris,LESIA, 5 Pl Jules Janssen, F-92195 Meudon, France
基金
欧洲研究理事会;
关键词
CONVECTIVE BOUNDARY-LAYER; SHALLOW-WATER TURBULENCE; CASSINI ISS OBSERVATION; MEAN-FLOW INTERACTION; GENERAL-CIRCULATION; EQUATORIAL OSCILLATION; POTENTIAL VORTICITY; MOIST CONVECTION; ZONAL JETS; MERIDIONAL DISTRIBUTION;
D O I
10.1016/j.icarus.2019.07.011
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The Cassini mission unveiled the intense and diverse activity in Saturn's atmosphere: banded jets, waves, vortices, equatorial oscillations. To set the path towards a better understanding of those phenomena, we performed high-resolution multi-annual numerical simulations of Saturn's atmospheric dynamics. We built a new Global Climate Model [GCM] for Saturn, named the Saturn DYNAMICO GCM, by combining a radiative-seasonal model tailored for Saturn to a hydrodynamical solver based on an icosahedral grid suitable for massively-parallel architectures. The impact of numerical dissipation, and the conservation of angular momentum, are examined in the model before a reference simulation employing the Saturn DYNAMICO GCM with a 1/2 degrees latitude-longitude resolution is considered for analysis. Mid-latitude banded jets showing similarity with observations are reproduced by our model. Those jets are accelerated and maintained by eddy momentum transfers to the mean flow, with the magnitude of momentum fluxes compliant with the observed values. The eddy activity is not regularly distributed with time, but appears as bursts; both barotropic and baroclinic instabilities could play a role in the eddy activity. The steady-state latitude of occurrence of jets is controlled by poleward migration during the spin-up of our model. At the equator, a weakly-superrotating tropospheric jet and vertically-stacked alternating stratospheric jets are obtained in our GCM simulations. The model produces Yanai (Rossby-gravity), Rossby and Kelvin waves at the equator, as well as extratropical Rossby waves, and large-scale vortices in polar regions. Challenges remain to reproduce Saturn's powerful superrotating jet and hexagon-shaped circumpolar jet in the troposphere, and downward propagating equatorial oscillation in the stratosphere.
引用
收藏
页数:30
相关论文
共 50 条
  • [21] Bringing the Future Into Focus: Benefits and Challenges of High-Resolution Global Climate Change Simulations
    Yeager, Stephen G.
    Danabasoglu, Gokhan
    Edwards, James
    Rosenbloom, Nan
    Castruccio, Fred
    Chang, Ping
    Zhang, Qiuying
    Fu, Dan
    Liu, Xue
    COMPUTING IN SCIENCE & ENGINEERING, 2021, 23 (03) : 34 - 41
  • [22] High resolution regional climate model simulations for Germany: Part II-projected climate changes
    Wagner, Sven
    Berg, Peter
    Schaedler, Gerd
    Kunstmann, Harald
    CLIMATE DYNAMICS, 2013, 40 (1-2) : 415 - 427
  • [23] High-resolution simulations of the impacts of asteroids into the Venusian atmosphere II: 3D models
    Korycansky, DG
    Zahnle, KJ
    Mac Low, MM
    ICARUS, 2002, 157 (01) : 1 - 23
  • [24] Evaluation of extreme sub-daily precipitation in high-resolution global climate model simulations
    Wehner, Michael
    Lee, Jiwoo
    Risser, Mark
    Ullrich, Paul
    Gleckler, Peter
    Collins, William D.
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2021, 379 (2195):
  • [25] Multi-Annual Kinematics of an Active Rock Glacier Quantified from Very High-Resolution DEMs: An Application-Case in the French Alps
    Bodin, Xavier
    Thibert, Emmanuel
    Sanchez, Olivier
    Rabatel, Antoine
    Jaillet, Stephane
    REMOTE SENSING, 2018, 10 (04)
  • [26] High-Resolution, Multilayer Modeling of Singapore's Urban Climate Incorporating Local Climate Zones
    Mughal, M. O.
    Li, Xian-Xiang
    Yin, Tiangang
    Martilli, Alberto
    Brousse, Oscar
    Dissegna, Maria Angela
    Norford, Leslie K.
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2019, 124 (14) : 7764 - 7785
  • [27] Gravity Wave Activity in the Atmosphere of Mars During the 2018 Global Dust Storm: Simulations With a High-Resolution Model
    Kuroda, Takeshi
    Medvedev, Alexander S.
    Yigit, Erdal
    JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2020, 125 (11)
  • [28] Investigation of local flow features in Istanbul. Part II: high-resolution real case simulations
    Ezber, Yasemin
    Sen, Omer Lutfi
    Boybeyi, Zafer
    Karaca, Mehmet
    INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2015, 35 (15) : 4802 - 4828
  • [29] Coupled atmosphere ocean climate model simulations in the Mediterranean region: effect of a high-resolution marine model on cyclones and precipitation
    Sanna, A.
    Lionello, P.
    Gualdi, S.
    NATURAL HAZARDS AND EARTH SYSTEM SCIENCES, 2013, 13 (06) : 1567 - 1577
  • [30] High-Resolution Global Climate Simulations with the ECMWF Model in Project Athena: Experimental Design, Model Climate, and Seasonal Forecast Skill
    Jung, T.
    Miller, M. J.
    Palmer, T. N.
    Towers, P.
    Wedi, N.
    Achuthavarier, D.
    Adams, J. M.
    Altshuler, E. L.
    Cash, B. A.
    Kinter, J. L., III
    Marx, L.
    Stan, C.
    Hodges, K. I.
    JOURNAL OF CLIMATE, 2012, 25 (09) : 3155 - 3172