Numerical study of the onset of thermosolutal convection in rotating spherical shells

被引:11
|
作者
Net, Marta [1 ]
Garcia, Ferran [1 ]
Sanchez, Juan [1 ]
机构
[1] Univ Politecn Cataluna, Dept Fis Aplicada, ES-08034 Barcelona, Spain
关键词
convection; mixtures; rotational flow; thermal diffusion; waves; THERMAL-CONVECTION; EARTHS CORE; NUMBER CONVECTION; GEODYNAMO; DRIVEN; FLUID;
D O I
10.1063/1.4723865
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The influence of an externally enforced compositional gradient on the onset of convection of a mixture of two components in a rotating fluid spherical shell is studied for Ekman numbers E = 10(-3) and E = 10(-6), Prandtl numbers sigma = 0.1, 0.001, Lewis numbers tau = 0.01, 0.1, 0.8, and radius ratio eta = 0.35. The Boussinesq approximation of the governing equations is derived by taking the denser component of the mixture for the equation of the concentration. Differential and internal heating, an external compositional gradient, and the Soret and Dufour effects are included in the model. By neglecting these two last effects, and by considering only differential heating, it is found that the critical thermal Rayleigh number R-e(c) depends strongly on the direction of the compositional gradient. The results are compared with those obtained previously for pure fluids of the same sigma. The influence of the mixture becomes significant when the compositional Rayleigh number R-c is at least of the same order of magnitude as the known R-e(c) computed without mixture. For positive and sufficiently large compositional gradients, R-e(c) decreases and changes sign, indicating that the compositional convection becomes the main source of instability. Then the critical wave number m(c) decreases, and the drifting waves slow down drastically giving rise to an almost stationary pattern of convection. Negative gradients delay the onset of convection and determine a substantial increase of m(c) and omega(c) for R-c sufficiently high. Potential laws are obtained numerically from the dependence of R-e(c) and of the critical frequency omega(c) on R-c, for the moderate and small Ekman numbers explored. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4723865]
引用
收藏
页数:21
相关论文
共 50 条
  • [41] Onset of convection in a rapidly rotating compressible fluid spherical shell
    Drew, SJ
    Jones, CA
    Zhang, K
    GEOPHYSICAL AND ASTROPHYSICAL FLUID DYNAMICS, 1995, 80 (3-4): : 241 - 254
  • [42] Onset of fully compressible convection in a rapidly rotating spherical shell
    Liu, Shuang
    Wan, Zhen-Hua
    Yan, Rui
    Sun, Chao
    Sun, De-Jun
    JOURNAL OF FLUID MECHANICS, 2019, 873 : 1090 - 1115
  • [43] Convection in rotating non-uniformly stratified spherical fluid shells: a systematic parameter study
    Simkanin, Jan
    Hejda, Pavel
    Jankovicova, Dana
    CONTRIBUTIONS TO GEOPHYSICS AND GEODESY, 2009, 39 (03): : 207 - 220
  • [44] Numerical study of thermosolutal convection with Soret effect in a square cavity
    Rebai, L. Kaffel
    Mojtabi, A.
    Safi, M. J.
    Mohamad, A. A.
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2008, 18 (5-6) : 561 - 574
  • [45] PATTERN SELECTION FOR THE OSCILLATORY ONSET IN THERMOSOLUTAL CONVECTION
    RENARDY, YY
    PHYSICS OF FLUIDS A-FLUID DYNAMICS, 1993, 5 (06): : 1376 - 1389
  • [46] Numerical simulations of supergranular scales of convection in shallow spherical shells
    DeRosa, ML
    Toomre, J
    PROCEEDINGS OF THE SOHO 10/GONG 2000 WORKSHOP ON HELIO- AND ASTEROSEISMOLOGY AT THE DAWN OF THE MILLENNIUM, 2001, 464 : 595 - 600
  • [47] Numerical study on the vertical Bridgman crystal growth with thermosolutal convection
    Kim, MG
    Kim, GO
    Park, BK
    KSME INTERNATIONAL JOURNAL, 2001, 15 (08): : 1188 - 1195
  • [48] Numerical study on the vertical bridgman crystal growth with thermosolutal convection
    Moo Geun Kim
    Geun Oh Kim
    Byung Kyu Park
    KSME International Journal, 2001, 15 : 1188 - 1195
  • [49] Onset of low Prandtl number thermal convection in thin spherical shells
    Garcia, F.
    Chambers, F. R. N.
    Watts, A. L.
    PHYSICAL REVIEW FLUIDS, 2018, 3 (02):
  • [50] Thermosolutal convection in a rotating fluid in hydromagnetics in porous medium
    Sharma, R.C.
    Bhardwaj, V.K.
    Acta Physica Hungarica, 1993, 73 (01)