Non-linear evolution of tidally forced inertial waves in rotating fluid bodies

被引:81
作者
Favier, B. [1 ,2 ]
Barker, A. J. [3 ,4 ]
Baruteau, C. [1 ]
Ogilvie, G. I. [1 ]
机构
[1] Univ Cambridge, Ctr Math Sci, Dept Appl Math & Theoret Phys, Cambridge CB3 0WA, England
[2] City Univ London, Ctr Math Sci, London EC1V 0HB, England
[3] Northwestern Univ, Ctr Interdisciplinary Explorat & Res Astrophys CI, Evanston, IL 60208 USA
[4] Northwestern Univ, Dept Phys & Astron, Evanston, IL 60208 USA
关键词
hydrodynamics; waves; planets and satellites: general; ELLIPTIC INSTABILITY; SPHERICAL-SHELL; 3-DIMENSIONAL INSTABILITY; ANELASTIC CONVECTION; DYNAMIC TIDES; DISSIPATION; PLANETS; STARS; FLOW; OSCILLATIONS;
D O I
10.1093/mnras/stu003
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We perform one of the first studies into the non-linear evolution of tidally excited inertial waves in a uniformly rotating fluid body, exploring a simplified model of the fluid envelope of a planet (or the convective envelope of a solar-type star) subject to the gravitational tidal perturbations of an orbiting companion. Our model contains a perfectly rigid spherical core, which is surrounded by an envelope of incompressible uniform density fluid. The corresponding linear problem was studied in previous papers which this work extends into the non-linear regime, at moderate Ekman numbers (the ratio of viscous to Coriolis accelerations). By performing high-resolution numerical simulations, using a combination of pseudo-spectral and spectral element methods, we investigate the effects of non-linearities, which lead to time-dependence of the flow and the corresponding dissipation rate. Angular momentum is deposited non-uniformly, leading to the generation of significant differential rotation in the initially uniformly rotating fluid, i.e. the body does not evolve towards synchronism as a simple solid body rotator. This differential rotation modifies the properties of tidally excited inertial waves, changes the dissipative properties of the flow and eventually becomes unstable to a secondary shear instability provided that the Ekman number is sufficiently small. Our main result is that the inclusion of non-linearities eventually modifies the flow and the resulting dissipation from what linear calculations would predict, which has important implications for tidal dissipation in fluid bodies. We finally discuss some limitations of our simplified model, and propose avenues for future research to better understand the tidal evolution of rotating planets and stars.
引用
收藏
页码:845 / 860
页数:16
相关论文
共 60 条
[1]  
[Anonymous], 1970, The Adiabatic Approximation Astronomy and Astrophysics
[2]   The magnetic structure of convection-driven numerical dynamos [J].
Aubert, Julien ;
Aurnou, Jonathan ;
Wicht, Johannes .
GEOPHYSICAL JOURNAL INTERNATIONAL, 2008, 172 (03) :945-956
[3]   Non-linear evolution of the elliptical instability in the presence of weak magnetic fields [J].
Barker, Adrian J. ;
Lithwick, Yoram .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2014, 437 (01) :305-315
[4]   Non-linear evolution of the tidal elliptical instability in gaseous planets and stars [J].
Barker, Adrian J. ;
Lithwick, Yoram .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2013, 435 (04) :3614-3626
[5]   On internal wave breaking and tidal dissipation near the centre of a solar-type star [J].
Barker, Adrian J. ;
Ogilvie, Gordon I. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2010, 404 (04) :1849-1868
[6]   On the tidal evolution of Hot Jupiters on inclined orbits [J].
Barker, Adrian J. ;
Ogilvie, Gordon I. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2009, 395 (04) :2268-2287
[7]   Inertial waves in a differentially rotating spherical shell [J].
Baruteau, C. ;
Rieutord, M. .
JOURNAL OF FLUID MECHANICS, 2013, 719 :47-81
[8]   3-DIMENSIONAL INSTABILITY OF ELLIPTIC FLOW [J].
BAYLY, BJ .
PHYSICAL REVIEW LETTERS, 1986, 57 (17) :2160-2163
[9]   Experimental evidence of a triadic resonance of plane inertial waves in a rotating fluid [J].
Bordes, Guilhem ;
Moisy, Frederic ;
Dauxois, Thierry ;
Cortet, Pierre-Philippe .
PHYSICS OF FLUIDS, 2012, 24 (01)
[10]   Experimental study of parametric subharmonic instability for internal plane waves [J].
Bourget, Baptiste ;
Dauxois, Thierry ;
Joubaud, Sylvain ;
Odier, Philippe .
JOURNAL OF FLUID MECHANICS, 2013, 723 :1-20