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Textbook Of Fluid Dynamics

by Madhurima
₹450 ₹450.00(-/ off)

Rating & Reviews

23 Customer Review

The book Of Fluid Dynamics by F. Chorlton, published by CBS Publishers and Distributors Pvt Ltd, is a classic, comprehensive guide for students of physics and engineering. It methodically covers core principles from vector analysis, kinematics, and equations of motion to advanced topics like gas dynamics, viscous flow, and magnetohydrodynamics. Renowned for its clear explanations and rigors mathematical approach, this book bridges theory and application. Featuring numerous solved examples, a dedicated solutions section, and a helpful appendix, this indispensable resource is perfect for mastering university-level fluid mechanics and preparing for examinations.

Have Doubts Regarding This Product ? Ask Your Question

  • Q1
    Does this book cover the fundamental mathematical tools needed for fluid dynamics?
    A1

    Yes, it begins with a dedicated chapter on Vector Analysis to provide the essential mathematical foundation for the topics that follow.

  • Q2
    Are the Navier-Stokes equations explained in this textbook?
    A2

    Absolutely. The Equations of Motion chapter meticulously derives and explains the Navier-Stokes and Euler equations for fluid flow.

  • Q3
    I am studying aerodynamics; will this book help with two-dimensional flow concepts?
    A3

    Yes, Chapter 5 on Two-Dimensional Flows extensively covers potential flow, vortex motion, and other key aerodynamic concepts.

  • Q4
    Does this text cover compressible flow and gas dynamics?
    A4

    Certainly. Chapters on Elements of Thermodynamics and Gas Dynamics provide a thorough introduction to compressible flow phenomena.

  • Q5
    Is this book suitable for self-study, or is it primarily a classroom text?
    A5

    It is excellent for self-study due to its clear structure and the inclusion of a comprehensive SOLUTIONS section for practice problems.

  • Q6
    Does the book discuss the behavior of conducting fluids in magnetic fields?
    A6

    Yes, a dedicated chapter on Magnetohydrodynamics (MHD) specifically addresses the dynamics of electrically conducting fluids.

  • Q7
    Does the content cover both incompressible and compressible fluid flows?
    A7

    Yes, it covers incompressible flows in earlier chapters and progresses to compressible flows in the Gas Dynamics chapter.

  • Q8
    Is the mathematical level of this book appropriate for advanced undergraduate students?
    A8

    Yes, it is perfectly suited for advanced undergraduates and postgraduates in mathematics, physics, and engineering.

  • Q9
    Does the book contain solved examples to illustrate the application of theory?
    A9

    Abundantly. Each chapter is filled with worked-out examples that demonstrate how to apply theoretical principles to solve problems.

  • Q10
    Will this book help me understand boundary layer theory?
    A10

    Definitely. The chapter on Viscous Flow provides a clear and detailed explanation of boundary layer formation and characteristics.

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PREFACE
SOURCES OF EXAMINATION QUESTIONS
KEY TO ABBREVIATIONS

1. Vector Analysis
2. Kinematics of Fluids in Motion
3. Equations of Motion of a Fluid
4. Some Three-Dimensional Flows
5. Some Two-Dimensional Flows
6. Elements of Thermodynamics
7. Gas Dynamics
8. Viscous Flow
9. Magnetohydrodynamics

APPENDIX: Characteristics of Second-Order Partial Differential Equations
SOLUTIONS
INDEX

Book Of Fluid Dynamics by F. Chorlton, published by CBS Publishers and Distributors Pvt Ltd., stands as a definitive and comprehensive guide for students and professionals seeking a masterful understanding of fluid mechanics. This classic text is meticulously structured to bridge the gap between theoretical principles and their practical applications in engineering and applied mathematics. It is an indispensable resource for undergraduate and postgraduate students specialising in physics, mathematics, and engineering disciplines where the study of fluid behaviour is paramount.

The book commences with a rigors foundation in vector analysis (Chapter 1), ensuring readers are well-equipped with the mathematical tools required for the complexities of fluid dynamics. This foundational chapter paves the way for a logical progression through the core principles of the subject. The Kinematics of Fluids in Motion (Chapter 2) is explored in detail, providing a clear description of fluid flow patterns without initially considering the forces involved.

Building on this, the Equations of Motion of a Fluid (Chapter 3) are derived and explained with exceptional clarity. Here, readers encounter the pivotal Navier-Stokes equations and Euler’s equations, forming the bedrock for all subsequent analysis. The text then moves to the practical application of these equations, examining Some Three-Dimensional Flows (Chapter 4) and Some Two-Dimensional Flows (Chapter 5). These chapters are rich with solved examples and classical problems, covering potential flow theory, source-sink combinations, and vortex motion, which are critical for understanding aerodynamics and hydrodynamics.

A significant portion of the book is dedicated to the specialised and advanced fields within fluid dynamics. Elements of Thermodynamics (Chapter 6) are introduced to provide the necessary background for the subsequent chapter on Gas Dynamics (Chapter 7). This section expertly covers compressible flow phenomena, including shock waves and supersonic flow, which are essential for students of aerospace engineering.

The text does not stop at ideal fluids; it delves into the complexities of real-world applications with a dedicated chapter on Viscous Flow (Chapter 8). Topics such as boundary layer theory, flow through pipes, and drag are discussed, linking theoretical concepts to tangible engineering challenges. Furthermore, the inclusion of a chapter on magnetohydrodynamics (Chapter 9) sets this book apart, introducing readers to the fascinating interaction between magnetic fields and conducting fluids, a topic of growing importance in astrophysics and nuclear engineering.

One of the standout features of this edition is its pedagogical strength. The book includes a valuable appendix on the characteristics of second-order partial differential equations, which underpin many fluid dynamics models. Moreover, it provides comprehensive SOLUTIONS to a vast array of problems, allowing students to self-assess and deepen their understanding. The detailed INDEX ensures quick and easy reference to specific topics. With sources of examination questions clearly cited, this book serves as an excellent preparation tool for university exams. Published by the trusted CBS Publishers and Distributors Pvt Ltd, this paperback edition ensures that F. Chorlton's masterful exposition remains accessible to a new generation of learners, making it a timeless addition to any scientific or technical library.

PREFACE
SOURCES OF EXAMINATION QUESTIONS
KEY TO ABBREVIATIONS

1. Vector Analysis
2. Kinematics of Fluids in Motion
3. Equations of Motion of a Fluid
4. Some Three-Dimensional Flows
5. Some Two-Dimensional Flows
6. Elements of Thermodynamics
7. Gas Dynamics
8. Viscous Flow
9. Magnetohydrodynamics

APPENDIX: Characteristics of Second-Order Partial Differential Equations
SOLUTIONS
INDEX

Have Doubts Regarding This Product ? Ask Your Question

  • Q1
    Does this book cover the fundamental mathematical tools needed for fluid dynamics?
    A1

    Yes, it begins with a dedicated chapter on Vector Analysis to provide the essential mathematical foundation for the topics that follow.

  • Q2
    Are the Navier-Stokes equations explained in this textbook?
    A2

    Absolutely. The Equations of Motion chapter meticulously derives and explains the Navier-Stokes and Euler equations for fluid flow.

  • Q3
    I am studying aerodynamics; will this book help with two-dimensional flow concepts?
    A3

    Yes, Chapter 5 on Two-Dimensional Flows extensively covers potential flow, vortex motion, and other key aerodynamic concepts.

  • Q4
    Does this text cover compressible flow and gas dynamics?
    A4

    Certainly. Chapters on Elements of Thermodynamics and Gas Dynamics provide a thorough introduction to compressible flow phenomena.

  • Q5
    Is this book suitable for self-study, or is it primarily a classroom text?
    A5

    It is excellent for self-study due to its clear structure and the inclusion of a comprehensive SOLUTIONS section for practice problems.

  • Q6
    Does the book discuss the behavior of conducting fluids in magnetic fields?
    A6

    Yes, a dedicated chapter on Magnetohydrodynamics (MHD) specifically addresses the dynamics of electrically conducting fluids.

  • Q7
    Does the content cover both incompressible and compressible fluid flows?
    A7

    Yes, it covers incompressible flows in earlier chapters and progresses to compressible flows in the Gas Dynamics chapter.

  • Q8
    Is the mathematical level of this book appropriate for advanced undergraduate students?
    A8

    Yes, it is perfectly suited for advanced undergraduates and postgraduates in mathematics, physics, and engineering.

  • Q9
    Does the book contain solved examples to illustrate the application of theory?
    A9

    Abundantly. Each chapter is filled with worked-out examples that demonstrate how to apply theoretical principles to solve problems.

  • Q10
    Will this book help me understand boundary layer theory?
    A10

    Definitely. The chapter on Viscous Flow provides a clear and detailed explanation of boundary layer formation and characteristics.

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