25 results on '"Carson, James K."'
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2. Transcritical-transcritical cascade CO2 heat pump cycles for high-temperature heating: A numerical evaluation
3. Optimisation of a grass cutting blade using design of experiments with qualitative and quantitative performance metrics
4. Integration of desiccant wheels and high-temperature heat pumps with milk spray dryers
5. Improved prediction of thermal properties of refrigerated foods
6. Validated numerical model of heat transfer in the forced air freezing of bulk packed whole chickens
7. Experimental measurement and numerical modelling of cooling rates of bulk-packed chicken drumsticks during forced-air freezing
8. Corrigendum to “A new approach to modelling the effective thermal conductivity of heterogeneous materials” [International Journal of Heat and Mass Transfer 49 (2006) 3075–3083]
9. The effect of surfactants on viscosity and stability of activated carbon, alumina and copper oxide nanofluids
10. The cold chain in New Zealand – A review
11. Use of simple thermal conductivity models to assess the reliability of measured thermal conductivity data
12. Effective thermal conductivity prediction of foods using composition and temperature data
13. Application of a co-continuous composite model of effective thermal conductivity to ice–air systems
14. Drying curves and apparent diffusivity of New Zealand chestnut variety ‘1015’
15. A new structural model of effective thermal conductivity for heterogeneous materials with co-continuous phases
16. Predicting the effective thermal conductivity of unfrozen, porous foods
17. Local surface heat transfer coefficients on a model beef side
18. Measurements of heat transfer coefficients within convection ovens
19. Review of effective thermal conductivity models for foods
20. A new approach to modelling the effective thermal conductivity of heterogeneous materials
21. Thermal conductivity bounds for isotropic, porous materials
22. Experimental measurements of the effective thermal conductivity of a pseudo-porous food analogue over a range of porosities and mean pore sizes
23. Enthalpy of solution of carbon dioxide in (water + monoethanolamine, or diethanolamine, orN-methyldiethanolamine) and (water + monoethanolamine + N-methyldiethanolamine) atT = 298.15 K
24. The influence of particle size on the accuracy of the thermal conductivity probe
25. Comment on the schematic representation of Krischer’s effective thermal conductivity model
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