Ozisik / Özisik / Orlande | Finite Difference Methods in Heat Transfer, Second Edition | E-Book | www.sack.de
E-Book

E-Book, Englisch, 600 Seiten

Reihe: Heat Transfer

Ozisik / Özisik / Orlande Finite Difference Methods in Heat Transfer, Second Edition


2. Auflage 2017
ISBN: 978-1-4822-4346-8
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

E-Book, Englisch, 600 Seiten

Reihe: Heat Transfer

ISBN: 978-1-4822-4346-8
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



This text 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.

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Weitere Infos & Material


Basic Relations

Classification of Second-Order Partial Differential Equations

Parabolic Systems

Elliptic Systems

Hyperbolic Systems

Systems of Equations

Boundary Conditions

Uniqueness of the Solution Problems

Discrete Approximation of Derivatives

Taylor Series Formulation

Finite Difference Operators

Control-Volume Approach

Application of Control-Volume Approach

Boundary Conditions

Errors Involved in Numerical Solutions Problems

Methods of Solving Sets of Algebraic Equations

Reduction to Algebraic Equations

Direct Methods

Iterative Methods

Nonlinear Systems Problems

One-Dimensional Steady-State Systems

Diffusive Systems

Diffusive-Convective System

Diffusive-Convective System with Flow Problems

One-Dimensional Parabolic Systems

Simple Explicit Method

Simple Implicit Method

Crank-Nicolson Method

Combined Method

Cylindrical and Spherical Symmetry

A Summary of Finite-Difference Schemes Problems

Multidimensional Parabolic Systems

Simple Explicit Method

(i) Two-Dimensional Diffusion

(ii) Two-Dimensional Steady Laminar Boundary Layer Flow

(iii) Two-Dimensional Transient Convection-Diffusion

Combined Method

(i) Three-Dimensional Diffusion

Alternating Direction Implicit (ADI) Method

Alternating Direction Explicit (ADE) Method

(i) One-Dimensional Diffusion

(ii) Two-Dimensional Diffusion

Modified Upwind Method

(i) Transient Forced Convection Inside Ducts for Step Change in Fluid Inlet

Temperature

Pressure-Velocity Coupling Problems

Elliptic Systems

Steady-State Diffusion

Velocity Field for Incompressible, Constant Property, Two-Dimensional Flow

Vorticity – Stream Function Formulation

Problems

Hyperbolic Systems

Hyperbolic Convection (Wave) Equation

Hyperbolic Heat Conduction Equation

System of Vector Equations Problems

Nonlinear Diffusion

Lagging Properties by One Time Step

Use of Three-Time Level Implicit Scheme

Linearization

Method of False Transients for Solving Steady-State Diffusion

Simultaneous Conduction and Radiation in Participating Media – Diffusion

Approximation

Three-Dimensional Simultaneous Conduction and Radiation in Participating Media

Problems

Phase Change Problems

Mathematical Formulation of Phase Change Problems

Variable Time Step Approach for Single-Phase Solidification

Variable Time Step Approach for Two-Phase Solidification

Enthalpy Method

Phase Change Problems with Natural Convection

Problems

Numerical Grid Generation

Coordinate Transformation Relations

Basic Ideas in Simple Transformations

Basic Ideas in Numerical Grid Generation and Mapping

Boundary Value Problem of Numerical Grid Generation

Finite Difference Representation of Boundary Value Problem of Numerical Grid Generation

Steady State Heat Conduction in Irregular Geometry

Laminar Forced Convection in Irregular Channels

Laminar Free Convection in Irregular Enclosures

Problems

Hybrid Numerical-Analytic Solutions

The Classical (CITT) and the Generalized Integral Transform (GITT) Techniques

GITT with Partial Transformation

Unified Integral Transforms (UNIT) Algorithm

Applications in Heat Conduction

Applications in Heat Convection

Problems

References

Appendices

Appendix I Discretization Formulae

Index



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