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Ozisik, N.M.; Orlande, H.R.B.: Inverse Heat Transfer: Fundamentals and Applications

2000; Hemisphere Pub.

This book introduces the fundamental concepts of inverse heat transfer problems. It presents in detail the basic steps of four techniques of inverse heat transfer protocol, as a parameter estimation approach and as a function estimation approach. These techniques are then applied to the solution of the problems of practical engineering interest involving conduction, convection, and radiation. The text also introduces a formulation based on generalized coordinates for the solution of inverse heat conduction problems in two-dimensional regions.

Tenenbaum, R.A.: Dinâmica

1997, Editora UFRJ, ISBN 85-7108-201-4 .

Dinâmica é um texto que aborda com rigor os conceitos fundamentais dessa disciplina sem perder o elo essencial com as aplicações. A visão do assunto é abrangente, com algumas novidades metodológicas que facilitam a compreensão da matéria pelo estudante. O autor apresenta de modo claro e preciso os princípios básicos da mecânica newtoniana, adotando um ferramental matemático comum aos estudantes do ciclo básico de engenharia. A cada novo conceito introduzido é apresentado um exemplo ilustrativo, e ao fim de cada grupo temático são propostos exercícios, com respostas, auxiliando o aluno a consolidar a matéria. Este livro é útil não apenas para o estudante de engenharia, mas também para professores, tanto pela qualidade e elegância na apresentação dos conceitos fundamentais, como pela excepcional escolha dos exemplos e exercícios. Os profissionais de engenharia que se ocupam de sistemas dinãmicos e estudantes de físicae matemática aplicada também encontrarão material para seus estudos.

Cotta, R.M.: Integral Transform in Computational Heat and Fluid Flow

1993, CIC Press.

Integral Transforms in Computational Heat and Fluid Flow is a comprehensive volume that emphasizes the Generalized Integral Transform Technique (G.I.T.T.) and the developments that have made the technique a powerful computational tool of practical interest. The book begins with an overview of the generalized integral transform technique in contrast with classical analytical ideas. Various applications are presented throughout the book, including transient fin analysis with time-dependent surface dissipation, laminar forced convection inside externally finned tubes, metals oxidation at high temperatures, forced convection in liquid metals, and Navier-Stokes equations.

Ozisik, M.N., Orlande, H.R.B., Colaço, M.J., Cotta, R.M.: Finite Difference Methods in Heat Transfer

2017, 2nd Edition; ISBN: 978-1482243451

  • Finite Difference Methods in Heat Transfer, Second Edition focuses on finite difference methods and their application to the solution of heat transfer problems. Such methods are based on the discretization of governing equations, initial and boundary conditions, which then replace a continuous partial differential problem by a system of algebraic equations. Finite difference methods are a versatile tool for scientists and for engineers. This updated book serves university students taking graduate-level coursework in heat transfer, as well as being an important reference for researchers and engineering.


    Features


    Provides a self-contained approach in finite difference methods for students and professionals

    Covers the use of finite difference methods in convective, conductive, and radiative heat transfer

    Presents numerical solution techniques to elliptic, parabolic, and hyperbolic problems

    Includes hybrid analytical–numerical approaches

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