Convective Heat Transfer in Ducts: The Integral Transform Approach

Convective Heat Transfer in Ducts: The Integral Transform Approach
Title Convective Heat Transfer in Ducts: The Integral Transform Approach PDF eBook
Author C.A.C.. Santos
Publisher Editora E-papers
Pages 345
Release 2001
Genre
ISBN 8587922238

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Integral Transforms in Computational Heat and Fluid Flow

Integral Transforms in Computational Heat and Fluid Flow
Title Integral Transforms in Computational Heat and Fluid Flow PDF eBook
Author Renato Machado Cotta
Publisher CRC Press
Pages 351
Release 2020-12-18
Genre Technology & Engineering
ISBN 1000099407

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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 progressively demonstrates the approach through increasingly difficult extensions and test problems. It 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.

Convection and Conduction Heat Transfer

Convection and Conduction Heat Transfer
Title Convection and Conduction Heat Transfer PDF eBook
Author Amimul Ahsan
Publisher BoD – Books on Demand
Pages 410
Release 2011-10-21
Genre Science
ISBN 9533075821

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The convection and conduction heat transfer, thermal conductivity, and phase transformations are significant issues in a design of wide range of industrial processes and devices. This book includes 18 advanced and revised contributions, and it covers mainly (1) heat convection, (2) heat conduction, and (3) heat transfer analysis. The first section introduces mixed convection studies on inclined channels, double diffusive coupling, and on lid driven trapezoidal cavity, forced natural convection through a roof, convection on non-isothermal jet oscillations, unsteady pulsed flow, and hydromagnetic flow with thermal radiation. The second section covers heat conduction in capillary porous bodies and in structures made of functionally graded materials, integral transforms for heat conduction problems, non-linear radiative-conductive heat transfer, thermal conductivity of gas diffusion layers and multi-component natural systems, thermal behavior of the ink, primer and paint, heating in biothermal systems, and RBF finite difference approach in heat conduction. The third section includes heat transfer analysis of reinforced concrete beam, modeling of heat transfer and phase transformations, boundary conditions-surface heat flux and temperature, simulation of phase change materials, and finite element methods of factorial design. The advanced idea and information described here will be fruitful for the readers to find a sustainable solution in an industrialized society.

Finite Difference Methods in Heat Transfer

Finite Difference Methods in Heat Transfer
Title Finite Difference Methods in Heat Transfer PDF eBook
Author M. Necati Özişik
Publisher CRC Press
Pages 432
Release 2017-07-12
Genre Science
ISBN 1351686992

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Finite Difference Methods in Heat Transfer presents a clear, step-by-step delineation of finite difference methods for solving engineering problems governed by ordinary and partial differential equations, with emphasis on heat transfer applications. The finite difference techniques presented apply to the numerical solution of problems governed by similar differential equations encountered in many other fields. Fundamental concepts are introduced in an easy-to-follow manner. Representative examples illustrate the application of a variety of powerful and widely used finite difference techniques. The physical situations considered include the steady state and transient heat conduction, phase-change involving melting and solidification, steady and transient forced convection inside ducts, free convection over a flat plate, hyperbolic heat conduction, nonlinear diffusion, numerical grid generation techniques, and hybrid numerical-analytic solutions.

The Integral Transform Method in Thermal and Fluids Sciences and Engineering

The Integral Transform Method in Thermal and Fluids Sciences and Engineering
Title The Integral Transform Method in Thermal and Fluids Sciences and Engineering PDF eBook
Author Renato Machado Cotta
Publisher Begell House Publishers
Pages 0
Release 1998
Genre Engineering mathematics
ISBN 9781567001204

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The text covers both the fundamentals and special topics and applications of the integral transform method. Part 1 provides a succinct and articulate overview of the classical integral transform method, and includes a chapter on integral transforms and symbolic computation. Part 2 covers an array of applications-mass diffusion in reactors, phase-change, drying, double pipe heat exchangers, heat conduction, petroleum reservoir simulation, laminar and turbulent flow, non-Newtonian flow and heat transfer, Navier-Stokes (2D and 3D), natural convection, and periodic forced convection.

Introduction to Convective Heat Transfer

Introduction to Convective Heat Transfer
Title Introduction to Convective Heat Transfer PDF eBook
Author Nevzat Onur
Publisher John Wiley & Sons
Pages 805
Release 2023-04-18
Genre Technology & Engineering
ISBN 1119766761

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INTRODUCTION TO CONVECTIVE HEAT TRANSFER A highly practical intro to solving real-world convective heat transfer problems with MATLAB® and MAPLE In Introduction to Convective Heat Transfer, accomplished professor and mechanical engineer Nevzat Onur delivers an insightful exploration of the physical mechanisms of convective heat transfer and an accessible treatment of how to build mathematical models of these physical processes. Providing a new perspective on convective heat transfer, the book is comprised of twelve chapters, all of which contain numerous practical examples. The book emphasizes foundational concepts and is integrated with explanations of computational programs like MATLAB® and MAPLE to offer students a practical outlet for the concepts discussed within. The focus throughout is on practical, physical analysis rather than mathematical detail, which helps students learn to use the provided computational tools quickly and accurately. In addition to a solutions manual for instructors and the aforementioned MAPLE and MATLAB® files, Introduction to Convective Heat Transfer includes: A thorough introduction to the foundations of convective heat transfer, including coordinate systems, and continuum and thermodynamic equilibrium concepts Practical explorations of the fundamental equations of laminar convective heat transfer, including integral formulation and differential formulation Comprehensive discussions of the equations of incompressible external laminar boundary layers, including laminar flow forced convection and the thermal boundary layer concept In-depth examinations of dimensional analysis, including the dimensions of physical quantities, dimensional homogeneity, and dimensionless numbers Ideal for first-year graduates in mechanical, aerospace, and chemical engineering, Introduction to Convective Heat Transfer is also an indispensable resource for practicing engineers in academia and industry in the mechanical, aerospace, and chemical engineering fields.

Convection and Conduction Heat Transfer

Convection and Conduction Heat Transfer
Title Convection and Conduction Heat Transfer PDF eBook
Author Amimul Ahsan
Publisher IntechOpen
Pages 408
Release 2011-10-21
Genre Science
ISBN 9789533075822

Download Convection and Conduction Heat Transfer Book in PDF, Epub and Kindle

The convection and conduction heat transfer, thermal conductivity, and phase transformations are significant issues in a design of wide range of industrial processes and devices. This book includes 18 advanced and revised contributions, and it covers mainly (1) heat convection, (2) heat conduction, and (3) heat transfer analysis. The first section introduces mixed convection studies on inclined channels, double diffusive coupling, and on lid driven trapezoidal cavity, forced natural convection through a roof, convection on non-isothermal jet oscillations, unsteady pulsed flow, and hydromagnetic flow with thermal radiation. The second section covers heat conduction in capillary porous bodies and in structures made of functionally graded materials, integral transforms for heat conduction problems, non-linear radiative-conductive heat transfer, thermal conductivity of gas diffusion layers and multi-component natural systems, thermal behavior of the ink, primer and paint, heating in biothermal systems, and RBF finite difference approach in heat conduction. The third section includes heat transfer analysis of reinforced concrete beam, modeling of heat transfer and phase transformations, boundary conditions-surface heat flux and temperature, simulation of phase change materials, and finite element methods of factorial design. The advanced idea and information described here will be fruitful for the readers to find a sustainable solution in an industrialized society.