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0028062501
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Liquid-to-particle convective heat transfer in a non-Newtonian carrier medium during continuous tube flow
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Balasubramaniam V.M., and Sastry S.K. Liquid-to-particle convective heat transfer in a non-Newtonian carrier medium during continuous tube flow. Journal of Food Engineering 23 (1994) 169-187
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Balasubramaniam, V.M.1
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84985275072
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Convective heat transfer at particle-liquid interface in continuous tube flow at elevated fluid temperatures
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Balasubramaniam V.M., and Sastry S.K. Convective heat transfer at particle-liquid interface in continuous tube flow at elevated fluid temperatures. Journal of Food Science 58 (1994) 675-681
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Balasubramaniam, V.M.1
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1842808559
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Validation of aseptic processing and packaging
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The geometry of shadows: effects of inhomogeneities in electrical field processing
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A finite-element analysis of heat generation and transfer during ohmic heating of food
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deAlwis A.A.P., and Fryer P.J. A finite-element analysis of heat generation and transfer during ohmic heating of food. Chemical Engineering Science 45 6 (1990) 1547-1559
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Ohmic processing of solid-liquid mixtures: Heat generation and convection effects
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Fryer P.J., deAlwis A.A.P., Koury E., Stapley A.G.F., and Zhang L. Ohmic processing of solid-liquid mixtures: Heat generation and convection effects. Journal of Food Engineering 18 (1993) 101-125
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Effect of fluid viscosity on the ohmic heating rate of solid-liquid mixtures
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Khalaf W.G., and Sastry S.K. Effect of fluid viscosity on the ohmic heating rate of solid-liquid mixtures. Journal of Food Engineering 27 (1996) 145-158
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Khalaf, W.G.1
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Validation of ohmic heating for quality enhancement of food products
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Kim H.-J., Choi Y.-M., Yang T.C.S., Taub I.A., Tempest P., Skudder P., et al. Validation of ohmic heating for quality enhancement of food products. Food Technology 50 5 (1996) 253-261
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Microbiological and chemical investigation of ohmic heating of particulate foods using a 5 kW ohmic system
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Safety considerations for ohmically heated, aseptically processed, multiphase low-acid food products
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A numerical investigation of electroconductive heating in solid-liquid mixtures
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Orangi S., Sastry S.K., and Li Q. A numerical investigation of electroconductive heating in solid-liquid mixtures. International Journal of Heat and Mass Transfer 41 14 (1998) 2211-2220
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0025725245
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Electrical conductivity of selected solid foods during ohmic heating
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Palaniappan S., and Sastry S.K. Electrical conductivity of selected solid foods during ohmic heating. Journal of Food Process Engineering 14 (1991) 221-236
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Models for ohmic heating of solid-liquid mixtures under worst-case heating scenarios
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Salengke S., and Sastry S.K. Models for ohmic heating of solid-liquid mixtures under worst-case heating scenarios. Journal of Food Engineering 83 3 (2007) 337-355
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A model for heating of liquid-particle mixtures in a continuous flow ohmic heater
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Sastry S.K. A model for heating of liquid-particle mixtures in a continuous flow ohmic heater. Journal of Food Process Engineering 15 (1992) 263-278
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Mathematical modeling and experimental studies on ohmic heating of liquid-particle mixtures in a static heater
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Ohmic heating of solid-liquid mixtures: A comparison of mathematical models under worst-case heating conditions
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Sastry S.K., and Salengke S. Ohmic heating of solid-liquid mixtures: A comparison of mathematical models under worst-case heating conditions. Journal of Food Process Engineering 21 (1998) 441-458
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Biological evaluation of a heat transfer simulation for sterilizing low-acid large particulate foods for aseptic packaging
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Accurate and fast temperature mapping during ohmic heating using proton resonance frequency shift MRI thermometry
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A comparison of alternative formulations for the prediction of electrical heating rates of solid-liquid food materials
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Investigation of three dimensional interstitial velocity, solids motion, and orientation in solid-liquid flow using particle tracking velocimetry
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Zitoun K.B., Sastry S.K., and Guezennec Y. Investigation of three dimensional interstitial velocity, solids motion, and orientation in solid-liquid flow using particle tracking velocimetry. International Journal of Multiphase Flow 27 (2001) 1397-1414
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