
Microscale and Nanoscale Heat Transfer
Analysis, Design, and Application
CRC Press
1st Edition
Published on 1. February 2016
Book
Hardback
487 pages
978-1-4987-3630-5 (ISBN)
Description
Microscale and Nanoscale Heat Transfer: Analysis, Design, and Applications features contributions from prominent researchers in the field of micro- and nanoscale heat transfer and associated technologies and offers a complete understanding of thermal transport in nano-materials and devices. Nanofluids can be used as working fluids in thermal systems; the thermal conductivity of heat transfer fluids can be increased by adding nanoparticles in fluids. This book provides details of experimental and theoretical investigations made on nanofluids for use in the biomechanical and aerospace industries. It examines the use of nanofluids in improving heat transfer rates, covers the numerical approaches for computational fluid dynamics (CFD) simulation of nanofluids, and reviews the experimental results of commonly used nanofluids dispersed in both spherical and nonspherical nanoparticles. It also focuses on current and developing applications of microscale and nanoscale convective heat transfer.
In addition, the book covers a wide range of analysis that includes:
Solid-liquid interface phonon transfer at the molecular level
The validity of the continuum hypothesis and Fourier law in nanochannels
Conventional methods of using molecular dynamics (MD) for heat transport problems
The molecular dynamics approach to calculate interfacial thermal resistance (ITR)
A review of experimental results in the field of heat pipes and two-phase flows in thermosyphons
Microscale convective heat transfer with gaseous flow in ducts
The application of the lattice Boltzmann method for thermal microflows
A numerical method for resolving the problem of subcooled convective boiling flows in microchannel heat sinks
Two-phase boiling flow and condensation heat transfer in mini/micro channels, and more
Microscale and Nanoscale Heat Transfer: Analysis, Design, and Applications
addresses the need for thermal packaging and management for use in cooling electronics and serves as a resource for researchers, academicians, engineers, and other professionals working in the area of heat transfer, microscale and nanoscale science and engineering, and related industries.
In addition, the book covers a wide range of analysis that includes:
Solid-liquid interface phonon transfer at the molecular level
The validity of the continuum hypothesis and Fourier law in nanochannels
Conventional methods of using molecular dynamics (MD) for heat transport problems
The molecular dynamics approach to calculate interfacial thermal resistance (ITR)
A review of experimental results in the field of heat pipes and two-phase flows in thermosyphons
Microscale convective heat transfer with gaseous flow in ducts
The application of the lattice Boltzmann method for thermal microflows
A numerical method for resolving the problem of subcooled convective boiling flows in microchannel heat sinks
Two-phase boiling flow and condensation heat transfer in mini/micro channels, and more
Microscale and Nanoscale Heat Transfer: Analysis, Design, and Applications
addresses the need for thermal packaging and management for use in cooling electronics and serves as a resource for researchers, academicians, engineers, and other professionals working in the area of heat transfer, microscale and nanoscale science and engineering, and related industries.
Reviews / Votes
"... better devised, more complete and more detailed than other books nowadays available on the subject. ... proposed by experienced and internationally recognized researchers in the area. The major topics of the book, that is, micro-channels and nanofluids, are of great interest nowadays and are currently applied to several practical engineering problems in heat transfer. ... of interest for graduate and senior undergraduate students, as well as for practicing engineers and researchers in the fields of heat transfer and fluid mechanics."-Helcio R. B. Orlande, Department of Mechanical Engineering, DEM/PEM - Politecnica/COPPE, Federal University of Rio de Janeiro, Brazil
More details
Language
English
Place of publication
Bosa Roca
United States
Publishing group
Taylor & Francis Inc
Target group
Professional and scholarly
College/higher education
Illustrations
252 s/w Abbildungen, 21 farbige Abbildungen, 53 s/w Tabellen
53 Tables, black and white; 21 Illustrations, color; 252 Illustrations, black and white
Dimensions
Height: 260 mm
Width: 183 mm
Thickness: 32 mm
Weight
1137 gr
ISBN-13
978-1-4987-3630-5 (9781498736305)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Mourad Rebay | Sadik Kakac | Renato M. Cotta
Microscale and Nanoscale Heat Transfer
Analysis, Design, and Application
E-Book
01/2016
1st Edition
CRC Press
€324.99
Available for download

Mourad Rebay | Sadik Kakac | Renato M. Cotta
Microscale and Nanoscale Heat Transfer
Analysis, Design, and Application
E-Book
01/2016
CRC Press
€324.99
Available for download
Persons
Mourad Rebay, Sadik Kakac, Renato M. Cotta
Content
Interface Resistance and Thermal Transport in Nano-Confined Liquids. Molecular Dynamics Simulations for Water-Metal Interfacial Thermal Resistance. Convective Heat Transfer Enhancement with Nanofluids: A State-of-the-Art Review. Heat Conduction in Nanofluids. Thermophysical Properties of Nanofluids. Stability of Nanofluids: Fundamentals, State-of-the-Art, and Potential Applications. Numerical Approaches for Convective Heat Transfer with Nanofluids. Heat Pipes and Nanotechnologies. Nanofluid Flow Simulation as the Flow through the Porous Media. Convective Heat Transfer with Gaseous Flow in Microducts. Numerical Simulation of Combined Microscale Effects on Convective Heat Transfer in Single-Phase Flows. Numerical and Experimental Studies of Liquid and Gas Flow and Heat Transfer in Microchannel and Nozzle. Analytical-Numerical Solutions for Conjugated Heat Transfer in Multistream Microsystems. Direct-Inverse Problem Analysis in the Thermal Characterization of Microsystems. Application of the Lattice Boltzmann Method (LBM) to Thermal Microflows. Heat and Fluid Flow of Gases in Porous Media with Micropores: Slip Flow Regime. Numerical Analysis of Subcooled Convective Boiling in Microchannels. Two-Phase Flow in Microchannels.