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Ahlers G, Grossmann S, Lohse D (2009a) Heat transfer and large scale dynamics in turbulent
Rayleigh-Bénard convection. Rev Mod Phys 81(2):503
Ahlers G, Funfschilling D, Bodenschatz E (2009b) Transitions in heat transport by turbulent con-
vection at Rayleigh numbers up to 10 15 . New J Phys 11(12):123001
Ahlers G, He X, Funfschilling D, Bodenschatz E (2012) Heat transport by turbulent Rayleigh-
Bénard convection for Pr 0 . 8and3 × 10 12
Ra 10 15 : aspect ratio ʓ
= 0.50. New J Phys
14(10):103012
Ahlers G, Xu X (2001) Prandtl-number dependence of heat transport in turbulent Rayleigh-Bénard
convection. Phys Rev Lett 86(15):3320
Bailon-Cuba J, Emran MS, Schumacher J (2010) Aspect ratio dependence of heat transfer and
large-scale flow in turbulent convection. J Fluid Mech 655:152
Bodenschatz E, Pesch W, Ahlers G (2000) Recent developments in Rayleigh-Bénard convection.
Annu Rev Fluid Mech 32(1):709
Brown E, Ahlers G (2007) Large-scale circulation model for turbulent Rayleigh-Bénard convection.
Phys Rev Lett 98(13):134501
Buffett BA (2000) Earth's core and the geodynamo. Science 288(5473):2007
Burnishev Y, Segre E, Steinberg V (2010) Strong symmetrical non-Oberbeck-Boussinesq turbulent
convection and the role of compressibility. Phys Fluids 22(3):035108
Busse FH (1978) Non-linear properties of thermal convection. Rep Prog Phys 41(12):1929
Cardin P, Olson P (1994) Chaotic thermal convection in a rapidly rotating spherical shell: conse-
quences for flow in the outer core. Phys Earth Planet In 82(3-4):235
Castaing B, Gunaratne G, Heslot F, Kadanoff L, Libchaber A, Thomae S, Wu X-Z, Zaleski S, Zanetti
G (1989) Scaling of hard thermal turbulence in Rayleigh-Bénard convection. J Fluid Mech 204:1
Cattaneo F, Lenz D, Weiss N (2001) On the origin of the solar mesogranulation. Astrophys J
563(1):L91
Chandrasekhar S (1961) Hydrodynamic and hydromagnetic stability. Dover Publications, New York
Chaumat S, Castaing B, Chilla F (2002) Rayleigh-Bénard cells: influence of the plates' properties.
Advances in turbulence IX (ed. IP Castro, PE Hancock, and TG Thomas) CIMNE, Barcelona
Chavanne X, Chilla F, Castaing B, Hebral B, Chabaud B, Chaussy J (1997) Observation of the
ultimate regime in Rayleigh-Bénard convection. Phys Rev Lett 79(19):3648
Chillà F, Schumacher J (2012) New perspectives in turbulent Rayleigh-Bénard convection. Eur Phys
J E 35(7):58
Cholemari MR, Arakeri JH (2009) Axially homogeneous, zero mean flow buoyancy-driven turbu-
lence in a vertical pipe. J Fluid Mech 621:69
Ciliberto S, Cioni S, Laroche C (1996) Large-scale flow properties of turbulent thermal convection.
Phys Rev E 54(6):R5901
Cross M, Hohenberg P (1993) Pattern formation outside of equilibrium. Rev Mod Phys 65(3):851
de Bruyn JR, Bodenschatz E, Morris SW, Trainoff SP, Hu Y, Cannell DS, Ahlers G (1996) Apparatus
for the study of Rayleigh-Bénard convection in gases under pressure. Rev Sci Instrum 67(6):2043
du Puits R, Resagk C, Thess A (2007) Breakdown of wind in turbulent thermal convection. Phys
Rev E 75(1):016302
du Puits R, Resagk C, Thess A (2013) Thermal boundary layers in turbulent Rayleigh-Bénard
convection at aspect ratios between 1 and 9. New J Phys 15(1):013040
Fonda E, Sreenivasan KR, Lathrop DP (2012) Liquid nitrogen in fluid dynamics: visualization and
velocimetry using frozen particles. Rev Sci Instrum 83(8):085101
Funfschilling D, Brown E, Ahlers G (2008) Torsional oscillations of the large-scale circulation in
turbulent Rayleigh-Bénard convection. J Fluid Mech 607:119
Funfschilling D, Brown E, Nikolaenko A, Ahlers G (2005) Heat transport by turbulent Rayleigh-
Bénard convection in cylindrical samples with aspect ratio one and larger. J Fluid Mech 536:145
Getling AV (1991) Formation of spatial structures in Rayleigh-Bénard convection. Sov Phys Usp
34(9):737
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