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Computational Methods for Fluid Dynamics

✍ Scribed by Joel H. Ferziger, Milovan Perić, Robert L. Street


Publisher
Springer International Publishing
Year
2020
Tongue
English
Leaves
606
Edition
4th ed. 2020
Category
Library

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✦ Synopsis



This book is a guide to numerical methods for solving fluid dynamics problems. The most widely used discretization and solution methods, which are also found in most commercial CFD-programs, are described in detail. Some advanced topics, like moving grids, simulation of turbulence, computation of free-surface flows, multigrid methods and parallel computing, are also covered. Since CFD is a very broad field, we provide fundamental methods and ideas, with some illustrative examples, upon which more advanced techniques are built. Numerical accuracy and estimation of errors are important aspects and are discussed in many examples. Computer codes that include many of the methods described in the book can be obtained online. This 4th edition includes major revision of all chapters; some new methods are described and references to more recent publications with new approaches are included. Former Chapter 7 on solution of the Navier-Stokes equations has been split into two Chapters to allow for a more detailed description of several variants of the Fractional Step Method and a comparison with SIMPLE-like approaches. In Chapters 7 to 13, most examples have been replaced or recomputed, and hints regarding practical applications are made. Several new sections have been added, to cover, e.g., immersed-boundary methods, overset grids methods, fluid-structure interaction and conjugate heat transfer.

✦ Table of Contents


Front Matter ....Pages i-xviii
Basic Concepts of Fluid Flow (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 1-21
Introduction to Numerical Methods (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 23-40
Finite Difference Methods (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 41-79
Finite Volume Methods (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 81-110
Solution of Linear Equation Systems (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 111-156
Methods for Unsteady Problems (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 157-182
Solution of the Navier–Stokes Equations: Part 1 (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 183-226
Solution of the Navier–Stokes Equations: Part 2 (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 227-274
Complex Geometries (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 275-346
Turbulent Flows (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 347-419
Compressible Flow (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 421-445
Efficiency and Accuracy Improvement (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 447-497
Special Topics (Joel H. Ferziger, Milovan Perić, Robert L. Street)....Pages 499-564
Back Matter ....Pages 565-596

✦ Subjects


Engineering; Engineering Fluid Dynamics; Numerical and Computational Physics, Simulation; Computational Science and Engineering


📜 SIMILAR VOLUMES


Computational Methods for Fluid Dynamics
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<p>In its 3rd revised and extended edition the book offers an overview of the techniques used to solve problems in fluid mechanics on computers and describes in detail those most often used in practice. Included are advanced methods in computational fluid dynamics, like direct and large-eddy simulat

Computational Methods for Fluid Dynamics
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The book offers an overview of the techniques used to solve problems in fluid mechanics on computers and describes in detail those most often used in practice. Included are advanced techniques in computational fluid dynamics, like direct and large-eddy simulation of turbulence, multigrid methods, pa

Computational Methods for Fluid Dynamics
✍ Joel H. Ferziger; Milovan Perić; Robert L. Street 📂 Library 📅 2019 🏛 Springer 🌐 English

This book is a guide to numerical methods for solving fluid dynamics problems. The most widely used discretization and solution methods, which are also found in most commercial CFD-programs, are described in detail. Some advanced topics, like moving grids, simulation of turbulence, computation of fr