Heat Conduction

Author: M. Necati Ozisik
Editor: John Wiley & Sons
ISBN: 9780471532569
File Size: 68,10 MB
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This Second Edition for the standard graduate level course in conduction heat transfer has been updated and oriented more to engineering applications partnered with real-world examples. New features include: numerous grid generation--for finding solutions by the finite element method--and recently developed inverse heat conduction. Every chapter and reference has been updated and new exercise problems replace the old.

Heat Conduction In Partial Vacuum

Author: James R. Thomas
Editor:
ISBN:
File Size: 52,48 MB
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Graphical Presentation Of Difference Solutions For Transient Radial Heat Conduction In Hollow Cylinders With Heat Transfer At The Inner Radius And Finite Slabs With Heat Transfer At One Boundary

Author: James E. Hatch
Editor:
ISBN:
File Size: 49,29 MB
Format: PDF
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Effect Of Chordwise Heat Conduction On The Torsional Stiffness Of A Diamond Shaped Wing Subjected To A Constant Heat Input

Author: Robert G. Thomson
Editor:
ISBN:
File Size: 38,53 MB
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Heat Conduction As An Equivalent Eigenvalue Problem

Author: John H. Lynch
Editor:
ISBN:
File Size: 40,50 MB
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Solution Of Heat Conduction Problems By The Grid Method

Author: GrigoriÄ­ Froimovich Muchnik
Editor:
ISBN:
File Size: 66,77 MB
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International Developments In Heat Transfer

Author:
Editor:
ISBN:
File Size: 17,91 MB
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Heat Conduction

Author: Latif M. Jiji
Editor: Springer Science & Business Media
ISBN: 9783642012679
File Size: 79,45 MB
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This book is designed to: Provide students with the tools to model, analyze and solve a wide range of engineering applications involving conduction heat transfer. Introduce students to three topics not commonly covered in conduction heat transfer textbooks: perturbation methods, heat transfer in living tissue, and microscale conduction. Take advantage of the mathematical simplicity of o- dimensional conduction to present and explore a variety of physical situations that are of practical interest. Present textbook material in an efficient and concise manner to be covered in its entirety in a one semester graduate course. Drill students in a systematic problem solving methodology with emphasis on thought process, logic, reasoning and verification. To accomplish these objectives requires judgment and balance in the selection of topics and the level of details. Mathematical techniques are presented in simplified fashion to be used as tools in obtaining solutions. Examples are carefully selected to illustrate the application of principles and the construction of solutions. Solutions follow an orderly approach which is used in all examples. To provide consistency in solutions logic, I have prepared solutions to all problems included in the first ten chapters myself. Instructors are urged to make them available electronically rather than posting them or presenting them in class in an abridged form.

Inverse Heat Conduction

Author: James V. Beck
Editor: James Beck
ISBN: 9780471083191
File Size: 34,20 MB
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Here is the only commercially published work to deal with the engineering problem of determining surface heat flux and temperature history based on interior temperature measurements. Provides the analytical techniques needed to arrive at otherwise difficult solutions, summarizing the findings of the last ten years. Topics include the steady state solution, Duhamel's Theorem, ill-posed problems, single future time step, and more.

Heat Conduction With Maple

Author: A. Aziz
Editor: R T Edwards Incorporated
ISBN: 9781930217157
File Size: 32,75 MB
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This book is the first heat transfer book that uses Maple in the study of heat conduction. The book covers elementary and advanced one-dimensional steady conduction, two-dimensional steady conduction, transient conduction, oscillatory conduction, extended surfaces and special functions. The use of Maple facilitates and enhances the learning process by removing the tedium of algebraic manipulations and providing a powerful numerical and graphical tool for heat conduction analysis and design. Highlights of this book include: - An overview of Maple to give the reader a quick working knowledge - Examples drawn from traditional and contemporary topics in heat conduction - Presents symbolic analytic, numerical and graphical solutions simultaneously - Coverage of special functions, laplace transformation, similarity analysis, and the method of complex combination - Comprehensive coverage of extended surfaces including electronics cooling - Implemenation of finite difference solution strategies - Optimization techniques for thermal system design Heat Conduction with Maple can be used as self-contained study of heat conduction and/or as a supplement to existing textbooks. The reader will master a powerful tool that that can be utilized to pursue new and challenging problems not only in conduction but also in convection and radiation.

Fundamentals Of Conduction

Author: American Society of Mechanical Engineers. Heat Transfer Division
Editor: Amer Society of Mechanical
ISBN:
File Size: 76,50 MB
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Heat Conduction

Author: David W. Hahn
Editor: John Wiley & Sons
ISBN: 1118330110
File Size: 79,44 MB
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The long-awaited revision of the bestseller on heat conduction Heat Conduction, Third Edition is an update of the classic text on heat conduction, replacing some of the coverage of numerical methods with content on micro- and nanoscale heat transfer. With an emphasis on the mathematics and underlying physics, this new edition has considerable depth and analytical rigor, providing a systematic framework for each solution scheme with attention to boundary conditions and energy conservation. Chapter coverage includes: Heat conduction fundamentals Orthogonal functions, boundary value problems, and the Fourier Series The separation of variables in the rectangular coordinate system The separation of variables in the cylindrical coordinate system The separation of variables in the spherical coordinate system Solution of the heat equation for semi-infinite and infinite domains The use of Duhamel's theorem The use of Green's function for solution of heat conduction The use of the Laplace transform One-dimensional composite medium Moving heat source problems Phase-change problems Approximate analytic methods Integral-transform technique Heat conduction in anisotropic solids Introduction to microscale heat conduction In addition, new capstone examples are included in this edition and extensive problems, cases, and examples have been thoroughly updated. A solutions manual is also available. Heat Conduction is appropriate reading for students in mainstream courses of conduction heat transfer, students in mechanical engineering, and engineers in research and design functions throughout industry.

Transient Heat Conduction In Finite Slabs With Position Dependent Heat Generation

Author: Roy W. Miller
Editor:
ISBN:
File Size: 57,92 MB
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Boundary Value Problems Of Heat Conduction

Author: M. Necati Ozisik
Editor: Courier Corporation
ISBN: 0486782867
File Size: 43,59 MB
Format: PDF
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Intended for first-year graduate courses in heat transfer, this volume includes topics relevant to chemical and nuclear engineering and aerospace engineering. The systematic and comprehensive treatment employs modern mathematical methods of solving problems in heat conduction and diffusion. Starting with precise coverage of heat flux as a vector, derivation of the conduction equations, integral-transform technique, and coordinate transformations, the text advances to problem characteristics peculiar to Cartesian, cylindrical, and spherical coordinates; application of Duhamel's method; solution of heat-conduction problems; and the integral method of solution of nonlinear conduction problems. Additional topics include useful transformations in the solution of nonlinear boundary value problems of heat conduction; numerical techniques such as the finite differences and the Monte Carlo method; and anisotropic solids in relation to resistivity and conductivity tensors. Illustrative examples and problems amplify the text, which is supplemented by helpful appendixes.

Heat Conduction

Author: Yaman Yener
Editor: CRC Press
ISBN: 1351441221
File Size: 79,23 MB
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Nearly thirty years since its first publication, the highly anticipated fourth edition of Heat Conduction upholds its reputation as an instrumental textbook and reference for graduate students and practicing engineers in mechanical engineering and thermal sciences. Written to suit a one-semester graduate course, the text begins with fundamental concepts, introducing the governing equation of heat conduction as derived from the First law of Thermodynamics. Solutions for one-dimensional conduction follow, then orthogonal functions, Fourier series and transforms, and multi-dimensional problems. Later sections focus on a series of specialized techniques, including integral equations, Laplace transforms, finite difference numerical methods, and variational formulations. Two new chapters (9 and 11) have been added to cover heat conduction with local heat sources and heat conduction involving phase change. Applications of Fourier transforms in the semi-infinite and infinite regions have been added to Chapter 7 and Chapter 10 has been expanded to include solutions by the similarity method. Also new to the fourth edition are additional problems at the end of each chapter.

Solving Direct And Inverse Heat Conduction Problems

Author: Jan Taler
Editor: Springer Science & Business Media
ISBN: 9783540334712
File Size: 19,94 MB
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This book presents a solution for direct and inverse heat conduction problems, discussing the theoretical basis for the heat transfer process and presenting selected theoretical and numerical problems in the form of exercises with solutions. The book covers one-, two- and three dimensional problems which are solved by using exact and approximate analytical methods and numerical methods. An accompanying CD-Rom includes computational solutions of the examples and extensive FORTRAN code.

Effects Of Friction And Heat Conduction On Sound Propagation In Ducts

Author: Patrick Huerre
Editor:
ISBN:
File Size: 18,44 MB
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Heat Conduction Fifth Edition

Author: Sadık Kakac
Editor: CRC Press
ISBN: 135171418X
File Size: 36,94 MB
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Heat Conduction, Fifth Edition, upholds its reputation as the leading text in the field for graduate students, and as a resource for practicing engineers. The text begins with fundamental concepts, introducing the governing equation of heat conduction, and progresses through solutions for one-dimensional conduction, orthogonal functions, Fourier series and transforms, and multi-dimensional problems. Integral equations, Laplace transforms, finite difference numerical methods, and variational formulations are then covered. A systematic derivation of the analytical solution of heat conduction problems in heterogeneous media, introducing a more general approach based on the integral transform method, has been added in this new edition, along with new and revised problems, and complete problem solutions for instructors.

Heat Conduction

Author: Liqiu Wang
Editor: Springer Science & Business Media
ISBN: 9783540743033
File Size: 71,50 MB
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Many phenomena in social, natural and engineering fields are governed by wave, potential, parabolic heat-conduction, hyperbolic heat-conduction and dual-phase-lagging heat-conduction equations. This monograph examines these equations: their solution structures, methods of finding their solutions under various supplementary conditions, as well as the physical implication and applications of their solutions.

Heat Conduction

Author: Sadik Kakac
Editor: CRC Press
ISBN: 9781138943841
File Size: 47,63 MB
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Heat Conduction, Fifth Edition, upholds its reputation as the leading text in the field for graduate students, and as a resource for practicing engineers. The text begins with fundamental concepts, introducing the governing equation of heat conduction, and progresses through solutions for one-dimensional conduction, orthogonal functions, Fourier series and transforms, and multi-dimensional problems. Integral equations, Laplace transforms, finite difference numerical methods, and variational formulations are then covered. A systematic derivation of the analytical solution of heat conduction problems in heterogeneous media, introducing a more general approach based on the integral transform method, has been added in this new edition, along with new and revised problems, and complete problem solutions for instructors.