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Keywords: Double Diffusion Systems
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Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 1998, 120(1): 234–242.
Published Online: February 1, 1998
... by the Heat Transfer Division July 25, 1996; revision received June 27, 1997; Keywords: Double Diffusion Systems; Enclosure Flows; Porous Media. Associate Technical Editor: K. Vafai. tial liquid phase. Heat and mass transfer modeling in this do- main generally uses a macroscopic representation of the mushy...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 1996, 118(3): 694–701.
Published Online: August 1, 1996
..., and the infrared radiant heat intensity. Nondimensional correlations for mass transfer, heat transfer, and defrost completion time have been derived. 21 February 1991 15 April 1996 05 12 2007 Double Diffusion Systems Forced Convection Radiation Kochs M. , Ko¯rber Ch...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 1995, 117(4): 1003–1010.
Published Online: November 1, 1995
... these results, the quantity of noncondensable required to destabilize a horizontal system can be calculated, and usually will be found to be small. 01 July 1994 01 June 1995 23 01 2008 Condensation Double Diffusion Systems Flow Instability Baines P. G. , and Gill A. E...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 1994, 116(3): 735–741.
Published Online: August 1, 1994
... and by increasing Sn concentration with decreasing radius in the upper portion of the ingot. 01 March 1993 01 September 1993 23 05 2008 Double Diffusion Systems Materials Processing and Manufacturing Processes Phase-Change Phenomena P. J. Prescott Department of Mechanical Engineering...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 1994, 116(3): 742–749.
Published Online: August 1, 1994
... Transfer Division March 1993; revision received September 1993, Keywords: Double Diffusion Systems, Materials Processing and Manufacturing Processes, Phase-Change Phenomena. Associate Technical Editor: R. Viskanta. and Weinberg, 1969, 1971, 1972; Wolff etal., 1988), rendering numerical simulation...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. May 1994, 116(2): 492–495.
Published Online: May 1, 1994
..., Miami, FL 33199. 2Fellow ASME; corresponding author. Contributed by the Heat Transfer Division of THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS. Manuscript received by the Heat Transfer Division May 1993; revision received October 1993. Keywords: Double Diffusion Systems, Natural Convection, Numerical...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 1993, 115(4): 1036–1043.
Published Online: November 1, 1993
..., it is concluded that the channels originate from perturbations at the liquid interface, which cause localized remelting and create conditions conducive to development of the channels. 01 August 1992 01 May 1993 23 05 2008 Double Diffusion Systems Materials Processing and Manufacturing...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 1993, 115(3): 606–612.
Published Online: August 1, 1993
... on the buoyancy ratio and the Prandtl and Schmidt numbers. Comprehensive Nusselt and Sherwood number data are presented for a wide range of thermal Grashof number, buoyancy ratio, and Prandtl and Schmidt numbers. 01 July 1992 01 December 1992 23 05 2008 Double Diffusion Systems Natural...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. May 1993, 115(2): 302–310.
Published Online: May 1, 1993
... November 1992. Keywords: Double Diffusion Systems, Liquid Metals, Materials Processing and Manufacturing Process. Associate Technical Editor: L. C. Witte. 2 The Model Simulations of this study are based on a continuum model for transport phenomena in dendritic solidification systems (Bennon and Incropera...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 1992, 114(4): 998–1010.
Published Online: November 1, 1992
... demonstrate the effect of the initial concentration on the structure of the mush/liquid interface, which varies from rather smooth to highly dendritic. 01 September 1991 01 February 1992 23 05 2008 Double Diffusion Systems Measurement Techniques Phase-Change Phenomena T. L Spatz D...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 1992, 114(1): 30–33.
Published Online: February 1, 1992
... and convection of solute during solidification. The results reveal that closure times are significantly increased for the solutions compared to pure water due to decreased conductivity of the mush compared to ice. 12 September 1990 28 January 1991 23 05 2008 Double Diffusion Systems...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 1991, 113(1): 148–157.
Published Online: February 1, 1991
... that these parameters had a major impact on the system behavior and their effects are thoroughly discussed. 22 May 1989 27 February 1990 23 05 2008 Double Diffusion Systems Porous Media Transient and Unsteady Heat Transfer M. Kazmierczak Department of Mechanical, Industrial, and Nuclear...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 1991, 113(1): 135–140.
Published Online: February 1, 1991
... to depend on the Lewis number, Grashof number, and buoyancy and aspect ratios. 09 March 1989 02 April 1990 23 05 2008 Double Diffusion Systems Flow Transition Natural Convection H. D. Jiang S. Ostrach Y. Kamotani Department of Mechanical and Aerospace Engineering, Case Western...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. November 1990, 112(4): 1088–1092.
Published Online: November 1, 1990
...; revision received February 21, 1990. Keywords: Double Diffusion Systems, Flow Instability, Porous Media. s = T = W = a = 0 = 5 = eT = es = A = A/» A m = V = P = salinity temperature normalized dimensionless vertical velocity -(dp/dT)/p0 (dp/dS)/p0 \jK/dm = Darcy number X/Am = thermal diffusivity ratio Df...
Journal Articles
Thermosolutal Inducement of No-Slip Free Surfaces in Combined Marangoni-Buoyancy Driven Cavity Flows
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. May 1990, 112(2): 363–369.
Published Online: May 1, 1990
... Transfer Division for publication in the JOURNAL OF HEAT TRANSFER. Manuscript received by the Heat Transfer Division November 27,1988; revision received June 19, 1989. Keywords: Double Diffusion Systems, Enclosure Flows, Thermocapillary Flows. du ~dx~ dv = 0 (1) Journal of Heat Transfer MAY 1990, Vol. 112...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 1990, 112(1): 78–83.
Published Online: February 1, 1990
... by the Heat Transfer Division November 14, 1988. Keywords: Double Diffusion Systems, Heat Pipes and Ther- mosyphons, Mixed Convection. than requiring that the liquid/vapor interface be impermeable to the noncondensable gas. Although they did not cite Rohani and Tien (1973) as their source, Galaktinov...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 1989, 111(3): 657–663.
Published Online: August 1, 1989
... value *w, Contributed by the Heat Transfer Division for publication in the JOURNAL OF HEAT TRANSFER. Manuscript received by the Heat Transfer Division January 13, 1987. Keywords: Double Diffusion Systems, Natural Convection. Fig. 1 Coordinate system and boundary conditions Journal of Heat Transfer...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. May 1988, 110(2): 403–409.
Published Online: May 1, 1988
... December 22, 1986. Keywords: Double Diffusion Systems, Phase-Change Phenomena, Porous Media. results show that the critical Rayleigh number in the porous layer, Ra decreases continuously as the thickness of the fluid layer is increased. He further considered the effect of volumetric heat generation...