Heat Transfer to Non-Newtonian Fluids

Heat Transfer to Non-Newtonian Fluids PDF

Author: Aroon Shenoy

Publisher: John Wiley & Sons

Published: 2018-03-12

Total Pages: 308

ISBN-13: 3527343628

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This book has been written with the idea of providing the fundamentals for those who are interested in the field of heat transfer to non-Newtonian fluids. It is well recognized that non-Newtonian fluids are encountered in a number of transport processes and estimation of the heat transfer characteristics in the presence of these fluids requires analysis of equations that are far more complex than those encountered for Newtonian fluids. A deliberate effort has been made to demonstrate the methods of simplification of the complex equations and to put forth analytical expressions for the various heat transfer situations in as vivid a manner as possible. The book covers a broad range of topics from forced, natural and mixed convection without and with porous media. Laminar as well as turbulent flow heat transfer to non-Newtonian fluids have been treated and the criterion for transition from laminar to turbulent flow for natural convection has been established. The heat transfer characteristics of non-Newtonian fluids from inelastic power-law fluids to viscoelastic second-order fluids and mildly elastic drag reducing fluids are covered. This book can serve the needs of undergraduates, graduates and industry personnel from the fields of chemical engineering, material science and engineering, mechanical engineering and polymer engineering.

Heat and Mass Transfer

Heat and Mass Transfer PDF

Author:

Publisher: BoD – Books on Demand

Published: 2019-09-11

Total Pages: 408

ISBN-13: 1789844460

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Heat and mass transfer is the core science for many industrial processes as well as technical and scientific devices. Automotive, aerospace, power generation (both by conventional and renewable energies), industrial equipment and rotating machinery, materials and chemical processing, and many other industries are requiring heat and mass transfer processes. Since the early studies in the seventeenth and eighteenth centuries, there has been tremendous technical progress and scientific advances in the knowledge of heat and mass transfer, where modeling and simulation developments are increasingly contributing to the current state of the art. Heat and Mass Transfer - Advances in Science and Technology Applications aims at providing researchers and practitioners with a valuable compendium of significant advances in the field.

Heat Transfer to Non-Newtonian Fluids

Heat Transfer to Non-Newtonian Fluids PDF

Author: Aroon V. Shenoy

Publisher:

Published: 2018

Total Pages:

ISBN-13: 9781523118588

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This title has been written with the idea of providing the fundamentals for those who are interested in the field of heat transfer to non-Newtonian fluids.

Non-Newtonian Flow in the Process Industries

Non-Newtonian Flow in the Process Industries PDF

Author: R. P. Chhabra

Publisher: Butterworth-Heinemann

Published: 1999

Total Pages: 453

ISBN-13: 0750637706

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Non-Newtonian fluid behaviour; Rheometry for non-Newtonian fluids; Flow in pipes and conduits of non-circular cross-sections; Flow of multi-phase mixtures in pipes; Particulate systems; Heat transfer characteristics of non-Newtonian fluids in pipes; Momentum, heat and mass transfer in boundary layers; Liquid mixing.

Bubbles, Drops, and Particles in Non-Newtonian Fluids

Bubbles, Drops, and Particles in Non-Newtonian Fluids PDF

Author: Raj P. Chhabra

Publisher: CRC Press

Published: 2023-08-31

Total Pages: 733

ISBN-13: 0429522878

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Provides thorough coverage of the scientific foundations and the latest advances in particle motion in non-Newtonian media. Proveds a new detailed section on the effect of confinement on heat transfer from bluff-bodies Demonstrates how dynamic behavior of single particles can yield useful information for modeling transport processes in complex multiphase flows. Addresses heat transfer in viscoplastic fluids throughout the entire book. Highlights qualitative differences between the response of a Newtonian and non-Newtonian fluids in the complex flows encountered in processing applications