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A numerical study of the heat transfer through a fluid layer with recirculating flow between concentric and eccentric spheres
Authors:R M Rasmussen  V Levizzani  H R Pruppacher
Institution:(1) Department of Atmospheric Sciences, University of California, 90024 Los Angeles, CA;(2) Present address: Reparto Nubi e Precipitazioni, Istituto FISBAT-CNR, Bologna, Italy
Abstract:A numerical study has been made of the heat transfer through a fluid layer with recirculating flow. The outer fluid surface was assumed to be spherical, while the inner surface consisted of a sphere concentrically or eccentrically located with respect to the outer spherical surface. The recirculating flow was assumed to be driven by a gas flow creating stress on the fluid's outer surface so that creeping (low Reynolds number) flow developed in its interior. The present study solves the Stokes equation of motion and the convective diffusion equation in bispherical coordinates and presents the streamline and isotherm patterns.Nomenclature a i inner sphere radius - a d outer sphere radius - A 1 defined by equation (5) - A 2 defined by equation (6) - B 1 defined by equation (7) - B 2 defined by equation (8) - c dimensional factor for bispherical coordinates - C constant in equation (4) - dprime narrowest distance between the two eccentric spheres - E 2 operator defined by equation (1) in spherical coordinates and by equation (21) in bispherical coordinates - G modified vorticity, defined in equation (22) - G * non-dimensional modified vorticity, defined in equation (28) - h phiv metric coefficient of bispherical coordinate system, defined in equation (18) - k w thermal conductivity of water - K 1 defined by equation (9) - K 2 defined by equation (10) - N Re Reynolds number=2a dUinfin/gn - N Pe,h Peclet number=2a dUinfin/kappa - n integer counter - q heat flux - r radius - r * non-dimensional radius=r/a d - S surface area - t time - t * non-dimensional time=kappat/a d 2 - T temperature - T o temperature at inner sphere surface - T a temperature at outer sphere surface - T * non-dimensional temperature;=(T–T o)/(Ta–To) - u velocity - u r radial velocity in spherical coordinates - u theta angular velocity in spherical coordinates - u eegr radial velocity in bispherical coordinates - u xgr angular velocity in bispherical coordinates - U infin free stream velocity - u r * =u r/Uinfin - u theta * =u theta/Uinfin - u eegr * =u eegr/Uinfin - u xgr * =u xgr/Uinfin Greek symbols deltaa 1 small displacement - zeta vorticity, defined in equation (17) - zeta* non-dimensional vorticity, defined in equation (27) - eegr radial bispherical coordinates - eegro bispherical coordinate of inner sphere - eegra bispherical coordinate of outer sphere - theta angular coordinate in spherical coordinates - kappa thermal diffusivity - kappaw thermal diffusivity of water - ngr kinematic viscosity - xgr angular bispherical coordinate - phiv spherical coordinate - psgr streamfunction - psgrprime non-dimensional streamfunction for spherical coordinates, = psgr/(U infina d 2 ) - psgr* non-dimensional streamfunction for bispherical coordinates, defined in equation (26)
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