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Advanced transport phenomena : analysis, modeling and computations / P.A. Ramachandran,...

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Auteur principal: Ramachandran, P.A., AuteurLangue : anglaisPays : Royaume-Uni.Publication : Cambridge : Cambridge university press, cop. 2014Description: 1 vol. (xxx-774 p.), ill., couv. ill. en coul., 26 cmISBN : 9780521762618.Résumé : An integrated, modern approach to transport phenomena for graduate students, featuring traditional and contemporary examples to demonstrate the diverse practical applications of the theory. Written in an easy to follow style, the basic principles of transport phenomena, and model building are recapped in Chapters 1 and 2 before progressing logically through more advanced topics including physicochemical principles behind transport models. Treatments of numerical, analytical, and computational solutions are presented side by side, often with sample code in MATLAB, to aid students' understanding and develop their confidence in using computational skills to solve real-world problems. Learning objectives and mathematical prerequisites at the beginning of chapters orient students to what is required in the chapter, and summaries and over 400 end-of-chapter problems help them retain the key points and check their understanding. Online supplementary material including solutions to problems for instructors, supplementary reading material, sample computer codes, and case studies complete the package. [Source : présentation de l'éditeur].Bibliographie : Bibliogr. p. [758]-765. Index.Sujet - Nom commun: Transport theory -- Textbooks | Théorie du transport | Dynamique des fluides | Transfert de chaleur | Mathématiques de l'ingénieur | Transfert de masse

Résumé et Sommaire détaillés disponibles sur le site de l'éditeur [consulté le 2014-11-19] http://www.cambridge.org/fr/academic/subjects/engineering/chemical-engineering/advanced-transport-phenomena-analysis-modeling-and-computations?format=HB lien

Bibliogr. p. [758]-765. Index

An integrated, modern approach to transport phenomena for graduate students, featuring traditional and contemporary examples to demonstrate the diverse practical applications of the theory. Written in an easy to follow style, the basic principles of transport phenomena, and model building are recapped in Chapters 1 and 2 before progressing logically through more advanced topics including physicochemical principles behind transport models. Treatments of numerical, analytical, and computational solutions are presented side by side, often with sample code in MATLAB, to aid students' understanding and develop their confidence in using computational skills to solve real-world problems. Learning objectives and mathematical prerequisites at the beginning of chapters orient students to what is required in the chapter, and summaries and over 400 end-of-chapter problems help them retain the key points and check their understanding. Online supplementary material including solutions to problems for instructors, supplementary reading material, sample computer codes, and case studies complete the package. [Source : présentation de l'éditeur]

1 Introduction 2 Examples of transport and system models 3 Flow kinematics 4 Forces and their representation 5 Equations of motion and Navier-Stokes equation 6 Illustration flow problems 7 Energy balance equation 8 Illustrative heat transport problems 9 Equations of mass transfer 10 Illustrative mass transfer problems 11 Analysis and solution of transient transport processes 12 Convective heat and mass transfer 13 Coupled transport problems 14 Scaling and perturbation analysis 15 More flow analysis 16 Bifurcation and stability analysis 17 Turbulent flow analysis 18 More convective heat transfer 19 Radiation heat transfer 20 More convective mass transfer 21 Mass transfer: multicomponent systems 22 Mass transport in charged systems