Description
<strong>Book Synopsis:</strong>
Introduction to Theoretical and Computational Fluid Dynamics is the first textbook to combine theoretical and computational aspects of fluid dynamics in a unified and comprehensive treatment. The theoretical developments are carried into the realm of numerical computation, and the numerical procedures are developed from first principles.
This book offers a comprehensive and rigorous introduction to the fundamental principles and equations that govern the kinematics and dynamics of the laminar flow of incompressible Newtonian fluids. It simultaneously illustrates the application of numerical methods to solving a broad range of problems drawn from diverse areas, and discusses the development of pertinent computational algorithms. Topics considered include the description and analysis of flow kinematics; the computation of exact solutions of hydrostatics and hydrodynamics by solving ordinary differential equations; the study and computation of potential flow; the theory and numerical study of flow at low Reynolds numbers, linear hydrodynamic stability, and vortex motion; boundary-integral methods for potential and Stokes flow; and finite-difference methods for the Navier-Stokes equation.
An appendix contains a primer of numerical methods that allows for ready reference.
A unique synthesis of the theoretical and computational aspects of its field, Introduction to Theoretical and Computational Fluid Dynamics serves as an ideal text and source reference for advanced undergraduate students, graduate students, and researchers in the various fields of science and engineering, including mechanical, aeronautical, and chemical engineering, applied mathematics, physics, and computational science. It assumes no prior experience in computational fluid dynamics, and provides references for specialized topics. Each section is followed by theoretical and computer problems that allow the reader to acquire hands-on experience and simultaneously develop insights into the physics of a variety of flows.
Details
Are you looking to expand your knowledge in the field of fluid dynamics? Look no further! Introducing Introduction to Theoretical and Computational Fluid Dynamics - the ultimate textbook that combines both theoretical and computational aspects of fluid dynamics. With its unified and comprehensive treatment, this book is a must-have resource for advanced undergraduate students, graduate students, and researchers in various fields.
What sets this book apart is its ability to seamlessly integrate theoretical developments with numerical computation. You'll gain a deep understanding of the fundamental principles and equations governing the dynamics of incompressible Newtonian fluids, while also learning how to apply numerical methods to solve a wide range of fluid flow problems.
Whether you're interested in the analysis of flow kinematics, the computation of exact solutions, or the study of potential flow and low Reynolds numbers, this book covers it all. With its extensive discussions on computational algorithms and boundary-integral methods, you'll develop the skills necessary to tackle complex fluid dynamics problems.
What's more, Introduction to Theoretical and Computational Fluid Dynamics includes theoretical and computer problems at the end of each section, allowing you to get hands-on experience and deepen your understanding of the physics behind various flows. No prior experience in computational fluid dynamics is required, making this book accessible to students and researchers from different disciplines.
Don't miss out on this unique synthesis of theoretical and computational aspects of fluid dynamics. Grab your copy of Introduction to Theoretical and Computational Fluid Dynamics today and take your understanding of fluid dynamics to new heights!
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