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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 51, 2007 - Issue 8
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Original Articles

Numerical Simulation of Phase Change at High Hydrostatic Pressure under Variable-Gravity Environment

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Pages 735-751 | Received 15 May 2006, Accepted 27 Jul 2006, Published online: 06 Apr 2007

REFERENCES

  • J. Raso and G. V. Barbosa-Cánovas , Nonthermal Preservation of Foods Using Combined Processing Techniques , Crit. Rev. Food Sci. Nutr. , vol. 43 , pp. 265 – 285 , 2003 .
  • M. F. San Martin , G. V. Barbosa-Canovas , and B. G. Swanson , Food Processing by High Hydrostatic Pressure , Crit. Rev. Food Sci. and Nutr. , vol. 42 , pp. 627 – 645 , 2002 .
  • J. C. Cheftel , Effects of High Hydrostatic Pressure on Food Constituents: An Overview , in C. Balny , R. Hayaschi , K. Hermans , and P. Masson (eds.), High Pressure and Biotechnology , pp. 195 – 209 , Collogue INSERM/John Libbey and Co. Ltd. , London , 1992 .
  • D. Knorr , Advantages, Opportunities and Challenges of High Hydrostatic Pressure Application to Food Systems , in R. Hayashi and C. Balny (eds.), High Pressure Bioscience and Biotechnology , Progress in Biotechnology , Vol. 13 , Proceedings of the International Conference on High Pressure Bioscience and Biotechnology, Kyoto, Japan (November 5–9, 1995), Elsevier Science B. V., Amsterdam, Lausanne, New York, Oxford, Shannon, Tokyo , pp. 279 – 287 , 1996 .
  • D. Fachin , A. van Loey , A. Indrawati , L. Ludikhuyze , and M. Hendrickx , Thermal and High-Pressure Inactivation of Tomato Polygalacturonase: A Kinetic Study , J. Food Sci. , vol. 67 , pp. 1610 – 1615 , 2002 .
  • J. C. Cheftel , M. Thiebaud , and E. Dumay , Pressure-Assisted Freezing and Thawing of Foods: A Review of Recent Studies , High Pressure Res. , vol. 22 , pp. 601 – 611 , 2002 .
  • M. T. Kalichevsky , D. Knorr , and P. J. Lillford , Potential Food Applications of High-Pressure Effects on Ice-Water Transitions , Trends Food Sci. Technol. , vol. 6 , pp. 253 – 259 , 1995 .
  • A. LeBail , D. Chevalier , D. M. Mussa , and M. Ghoul , High Pressure Freezing and Thawing of Foods: A Review , Int. J. Refrig. , vol. 25 , pp. 504 – 513 , 2002 .
  • A. Saul and W. Wagner , A Fundamental Equation for Water Covering in the Range from the Melting Line to 1273 K at Pressures up to 25000 MPa , J. Phys. Chem. Ref. Data , vol. 18 , pp. 1537 – 1564 , 1989 .
  • O. V. Nagornov and V. E. Chizhov , Thermodynamic Properties of Ice, Water and a Mixture of the Two at High Pressure , J. Appl. Mech. Tech. Phys. , vol. 31 , pp. 378 – 385 , 1990 .
  • P. Först , F. Werner , and A. Delgado , The Viscosity of Water—Especially at Subzero Degrees Centigrade , Rheol. Acta , vol. 39 , pp. 566 – 573 , 2000 .
  • M. Pehl and A. Delgado , An In-Situ Technique to Visualize Temperature and Velocity Fields in Liquid Biotechnical Substances at High Pressure, in H. Ludwig (eds.), Advances in High Pressure Bioscience and Biotechnology , pp. 519–522, Springer-Verlag , Heidelberg , 1999.
  • M. Pehl , F. Werner , and A. Delgado , First Visualization of Temperature Fields in Liquids at High Pressure , Exp. Fluids , vol. 29 , pp. 302 – 304 , 2000 .
  • C. Hartmann and A. Delgado , Numerical Simulation of Convective and Diffusive Transport Effects on a High-Pressure-Induced Inactivation Process , Biotechnol. Bioeng. , vol. 79 , pp. 94 – 104 , 2002 .
  • C. Hartmann , A. Delgado , and J. Szymczyk , Convective and Diffusive Transport Effects in a High Pressure Induced Inactivation Process of Packed Food , J. Food Eng. , vol. 59 , pp. 33 – 44 , 2003 .
  • M. Giangi , T. A. Kowalewski , F. Stella , and E. Leonardi , Natural Convection during Ice Formation: Numerical Simulation vs. Experimental Results , Comput. Assist. Mech. Eng. Sci. , vol. 7 , pp. 321 – 342 , 2000 .
  • S. Denys , A. M. Van Loey , and M. E. Hendrickx , Modeling Conductive Heat Transfer during High Pressure Thawing Processes: Determination of Latent Heat as a Function of Pressure , Biotechnol. Prog. , vol. 16 , pp. 447 – 455 , 2000 .
  • P. D. Sanz and L. Otero , High Pressure Shift Freezing. Part 2, Modeling of Freezing Times for a Finite Cylindrical Model , Biotechnol. Prog. , vol. 16 , pp. 1037 – 1043 , 2000 .
  • J. M. Chourot , R. Lemaire , G. Cornier , and A. Le Bail , Modeling of High Pressure Thawing , in R. Hayashi (eds.), High Pressure Bioscience and Biotechnology , Progress in Biotechnology , Vol. 13 , proceedings of the International Conference on High Pressure Bioscience and Biotechnology, Kyoto, Japan (November 5–9, 1995), Elsevier Science B. V., Amsterdam, Lausanne, New York, Oxford, Shannon, Tokyo , pp. 439 – 444 , 1996 .
  • W. Kowalczyk , C. Hartmann , and A. Delgado , Modelling and Numerical Simulation of Convection Driven High Pressure Induced Phase Changes , Int. J. Heat Mass Transfer , vol. 47 , pp. 1079 – 1089 , 2004 .
  • A. D. Brend , V. R. Voller , and K. J. Reid , Enthalpie–Porosity Technique for Modelling Convection-Diffusion Phase Change: Application to the Melting of a Pure Metal , Numer. Heat Transfer , vol. 13 , pp. 297 – 318 , 1988 .
  • V. R. Voller and C. Prakash , A Fixed Grid Numerical Modelling Methodology for Convection-Diffusion Mushy Region Phase-Change Problems , Int. J. Heat Mass Transfer , vol. 30 , pp. 1709 – 1719 , 1987
  • J. Ni and F. P. Incropera , Extension of the Continuum Model for Transport Phenomena Occuring during Metal Alloy Solidification—I. The Conservation Equations , Int. J. Heat Mass Transfer , vol. 38 , pp. 1271 – 1284 , 1995 .
  • S. Barsi , M. Kessemi , and J. I. D. Alexander , Effects of Void-Induced Convection on Interface Morphology and Segregation during Low-G Solidification , Int. J. Heat Mass Transfer , vol. 47 , pp. 5129 – 5137 , 2004 .
  • Y. Asako , M. Faghri , M. Charmchi , and P. A. Bahrami , Numerical Solution for Melting of Unfixed Rectangular Phase-Change Material under Low-Gravity Environment , Numer. Heat Transfer A , vol. 25 , pp. 191 – 208 , 1994 .
  • Y. Asako , E. Goncalves , M. Faghri , and M. Charmchi , Numerical Solution of Melting Processes for Fixed and Unfixed Phase-Change Material in the Presence of Magnetic Field—Simulation of Low-Gravity Enviroment , Numer. Heat Transfer A , vol. 42 , pp. 565 – 583 , 2002 .
  • E. Gonçalves , M. Faghri , Y. Asako , and M. Charmchi , Numerical Solution of Melting Processes for Unfixed Phase-Change Material in the Presence of Electromagnetically Simulated Low Gravity , Numer. Hat Transfer A , vol. 46 , pp. 343 – 365 , 2004 .
  • Y. Asako and M. Faghri , Effect of Density Change on Melting of Unfixed Rectangular Phase-Change Material under Low-Gravity Environment, Numer. Heat Transfer A , vol. 36, pp. 825–838, 1999.
  • A. Shirvanian , M. Faghri , Z. Zhang , and Y. Asako , Numerical Solution of the Effect of Vibration on Melting of Unfixed Rectangular Phase-Change Material under Variable-Gravity Environment , Numer. Heat Transfer A , vol. 34 , pp. 257 – 278 , 1998 .
  • R. Greve , Fluid Dynamics of Planetary Ices , GAMM-Mitteilungen , pp. 29 – 51 , Wiley-VCH Verlag , Weinheim , 2006 .
  • J. Banaszek , Y. Jaluria , T. A. Kowalewski , and M. Rebow , Semi-Implicit FEM Analysis of Natural Convection in Freezing Water , Numer. Heat Transfer A , vol. 36 , pp. 449 – 472 , 1999 .
  • S. V. Patankar , Numerical Heat Transfer and Fluid Flow , Hemisphere , New York , 1980 .

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