Computational Fluid Dynamics A Practical Approach 3rd Edition by Jiyuan Tu, Guan-Heng Yeoh, Chaoqun Liu – Ebook PDF Instant Download/DeliveryISBN: 0081012444, 9780081012444
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ISBN-10 : 0081012444
ISBN-13 : 9780081012444
Author: Jiyuan Tu, Guan-Heng Yeoh, Chaoqun Liu
Computational Fluid Dynamics: A Practical Approach, Third Edition, is an introduction to CFD fundamentals and commercial CFD software to solve engineering problems. The book is designed for a wide variety of engineering students new to CFD, and for practicing engineers learning CFD for the first time. Combining an appropriate level of mathematical background, worked examples, computer screen shots, and step-by-step processes, this book walks the reader through modeling and computing, as well as interpreting CFD results. This new edition has been updated throughout, with new content and improved figures, examples and problems.
Computational Fluid Dynamics A Practical Approach 3rd Table of contents:
Chapter 1: Introduction
Abstract
1.1 What is Computational Fluid Dynamics
1.2 Advantages of Computational Fluid Dynamics
1.3 Application of Computational Fluid Dynamics
1.4 The Future of Computational Fluid Dynamics
1.5 Summary
Review Questions
Chapter 2: CFD Solution Procedure: A Beginning
Abstract
2.1 Introduction
2.2 Problem Setup—Preprocess
2.3 Numerical Solution—CFD Solver
2.4 Result Report and Visualization—Postprocess
2.5 Summary
Review Questions
Chapter 3: Governing Equations for CFD: Fundamentals
Abstract
3.1 Introduction
3.2 The Continuity Equation
3.3 The Momentum Equation
3.4 The Energy Equation
3.5 The Additional Equations for Turbulent Flow
3.6 Generic Form of the Governing Equations for CFD
3.7 Physical Boundary Conditions of the Governing Equations
3.8 Summary
Review Questions
Chapter 4: CFD Mesh Generation: A Practical Guideline
Abstract
4.1 Introduction
4.2 Types of Meshes
4.3 Comments on Mesh Topology
4.4 Local Mesh Refinement
4.5 Overlapping Mesh Techniques
4.6 Adaptive Mesh With Solution
4.7 Moving Meshes
4.8 Guidelines for Mesh Quality and Mesh Design
4.9 Summary
Review Questions
Chapter 5: CFD Techniques: The Basics
Abstract
5.1 Introduction
5.2 Discretization of Governing Equations
5.3 Converting Governing Equations to Algebraic Equation System
5.4 Numerical Solutions to Algebraic Equations
5.5 Pressure–Velocity Coupling—Simple Scheme
5.6 Multigrid Method
5.7 Summary
Review Questions
Chapter 6: CFD Solution Analysis: Essentials
Abstract
6.1 Introduction
6.2 Consistency
6.3 Stability
6.4 Convergence
6.5 Accuracy
6.6 Efficiency
6.7 Case Studies
6.8 Summary
Review Questions
Chapter 7: Practical Guidelines for CFD Simulation and Analysis
Abstract
7.1 Introduction
7.2 Guidelines for Boundary Conditions
7.3 Guidelines for Turbulence Modeling
7.4 Other Practical Guidelines for CFD Users
7.5 Summary
Review Questions
Chapter 8: Some Applications of CFD With Examples
Abstract
8.1 Introduction
8.2 To Assist in Design Process—As a Design Tool
8.3 To Enhance Understanding—As a Research Tool
8.4 Other Important Applications
8.5 Summary
Review Questions
Chapter 9: Some Advanced Topics in CFD
Abstract
9.1 Introduction
9.2 Advances in Numerical Methods and Techniques
9.3 Advances in Computational Models
9.4 Other Numerical Approaches for Computation of Fluid Dynamics
9.5 Summary
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Tags: Computational, Fluid Dynamics, Practical Approach, Jiyuan Tu, Guan Heng Yeoh, Chaoqun Liu