Mathematics of Heat Transfer by G. E. TupholmeMathematics of Heat Transfer by G. E. Tupholme

Mathematics of Heat Transfer

EditorG. E. Tupholme, A. S. Wood

Hardcover | July 1, 1998

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During this century, as no other, the two themes of mathematics and heat transfer have become inextricably intertwined, and it was with this underlying sentiment that this volume was conceived. It includes contributions from fifteen countries throughout the world, covering various problems inheat transfer. The contributors work in diverse fields and include mathematicians, theoretical engineers, experimentalists and industrialists.

About The Author

A. S. Wood is at University of Bradford.
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Title:Mathematics of Heat TransferFormat:HardcoverDimensions:358 pages, 9.21 × 6.14 × 0.94 inPublished:July 1, 1998Publisher:Oxford University Press

The following ISBNs are associated with this title:

ISBN - 10:019850358X

ISBN - 13:9780198503583

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Table of Contents

1. 2. Inverse problems in heat transfer3. Constructal optimization of paths for heat transfer4. Prediction of turbulent heat transfer in single-phase industrial flows5. Dynamic instability of rapid solidification fronts6. CFD modelling of radiative-convective heat flux sensor7. Stochastic model of liquid filtration in porous media with large-scale inhomogeneities8. Evolution of a 1-D plasma to thermal equilibrium9. Continuous cellular automata for heat conduction10. Stefan problem in blow moulding operations11. Modelling of heat transfer in the curing of insulated cables12. Analysis of composed fin arrays13. Stochastic geometric model of combustion in two-phase turbulent flow14. Random walk trajectory model of interphase heat exchange in turbulent twop-phase flow15. Solution in two-ohase Stefan problems by the heat balance integral method16. 2-D unsteady temperature in a boiler shell by the multistage-multigroup least squares method17. Interaction of insoluble sperical particles with a solidifying interface in the presence of morphological instabilites18. Transient mixed convection from a vertical surface in a porous medium19. Solving systems of ordinary differential equations20. Precedence ordering techniques21. New approach to modelling structures of randomly intersecting pores. Application to char gasification22. Experimental heat transfer intensification in two-dimensional flow under bulk forces23. Model of heat exchange between an aquiferous layer and a vertical heat probe24. Mathematical model of a geothermal field exchanger25. Melting around a cylindrical source with a constant wall temperature26. Mixed convection over a horizontal surface embedded in a porous medium27. Heat transfer and gas dynamics in Stirling engines28. Influence of overall heat trasnsfer coefficient on performance of plate heat exchangers29. Spectral analysis of Lewis number influence on double-diffusive convection of a binary gas30. Heat transfer of high temperature fouling in combustion chambers31. Modelling of heat transfer processes in naturally fractured oil formations32. Confidence intervals for transient estimation of termal properties - theory33. Numerical modelling of concentration fluctuations in turbulent reactive plumes in the atmospheric boundary layer34. Modelling crystallization in chocolate modelling35. Use of the inverse method to measure temperatures in non-Newtonian fluids36. Minimizing heat loss in creeping flow past a cylinder37. Analytical investigation into the effect of termal capacity on the phase delay angle used to determine local heat transfer coefficients38. Heat transfer in film inundation flow over a cylinder39. Certain problems in the solution of integral equations40. Improved methods for the solution of integral equations41. Unsteady forced convective heat transfer about a sphere in a porous medium