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Heat Transfer Due to Laminar Natural Convection of Nanofluids: Theory and Calculation

Heat Transfer Due to Laminar Natural Convection of Nanofluids: Theory and Calculation
Kataloginformation
Feldname Details
Vorliegende Sprache eng
ISBN 978-3-319-94402-9
Name Shang, De-Yi ¬[VerfasserIn]¬
Zhong, Liang-Cai ¬[VerfasserIn]¬
Name ANZEIGE DER KETTE Zhong, Liang-Cai ¬[VerfasserIn]¬
T I T E L Heat Transfer Due to Laminar Natural Convection of Nanofluids
Zusatz zum Titel Theory and Calculation
Verlagsort Cham
Verlag Springer International Publishing
Erscheinungsjahr 2019
2019
Umfang Online-Ressource (XIV, 202 p. 32 illus., 27 illus. in color, online resource)
Reihe Heat and Mass Transfer
Titelhinweis Erscheint auch als (Druck-Ausgabe)ISBN: 978-3-319-94402-9
Printed editionISBN: 978-3-319-94402-9
ISBN ISBN 978-3-319-94403-6
Klassifikation SCI084000
PHDF
SCI085000
532
533.62
QC138-168.86
QA930
Kurzbeschreibung This book presents a theoretical study of heat transfer due to laminar natural convection of nanofluids, using Al2O3-water nanofluid as an example. An innovative method of similarity transformation of velocity fields on laminar boundary layers is applied for the development of a mathematical governing model of natural convection with actual nanofluids, and a novel model of the nanofluid's variable thermophysical properties is derived by a mathematical analysis based on the developed model of variable physical properties of fluids combined with the model of the nanofluid's thermal conductivity and viscosity. Based on these, the physical property factors of nanofluids are produced, which leads to a simultaneous solution for deep investigations of hydrodynamics and heat transfer of nanofluid's natural convection. The book also proposes novel predictive formulae for the evaluation of heat transfer of Al2O3-water nanofluid’s natural convection. The formulae have reliable theoretical and practical value because they are developed by rigorous theoretical analysis of heat transfer combined with full consideration of the effects of the temperature-dependent physical properties of nanofluids and the nanoparticle shape factor and concentration, as well as variations of fluid boundary temperatures. The conversion factors proposed help to turn the heat transfer coefficient and rate of fluid natural convection into those of nanofluid natural convection. Furthermore, several calculation examples are provided to demonstrate the heat transfer application of the proposed predictive formulae
2. Kurzbeschreibung Introduction -- Conservation Equations of Fluid Flow -- Partial Differential Equations of Boundary Layer of Nanofluid’s Natural Convection -- Ordinary Differential Equations of Boundary Layer of Nanofluid’s Natural Convection -- Mathematical Model of Variable Physical Properties of Nanofluids -- Numerical Solutions of Velocity and Temperature Fields -- Skin-Friction Coefficient -- Predictive Formula of Wall Temperature Gradient -- Predictive Formulae on Heat Transfer of Al2O3-Water Nanofluid's Natural Convection -- Calculation Examples by Using the Predictive Formulae on Heat Transfer -- Conversion Factors on Heat Transfer of Nanofluid's Natural Convection -- Numerical Simulation of Conversion Factors on Heat Transfer -- Conversion Formulae on of Heat Transfer of Al2O3-Water Nanofluid's Natural Convection -- Calculation Examples on Heat Transfer by Using Conversion Formulae -- Postscript
SWB-Titel-Idn 508133831
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-3-319-94403-6
Internetseite / Link Volltext
Siehe auch Resolving-System
Siehe auch Cover
Kataloginformation500287429 Datensatzanfang . Kataloginformation500287429 Seitenanfang .
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