Computational Fluid Dynamics for Incompressible Flows

Author:   D.G. Roychowdhury
Publisher:   Taylor & Francis Ltd
ISBN:  

9780367408060


Pages:   416
Publication Date:   21 August 2020
Format:   Hardback
Availability:   In Print   Availability explained
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Computational Fluid Dynamics for Incompressible Flows


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Full Product Details

Author:   D.G. Roychowdhury
Publisher:   Taylor & Francis Ltd
Imprint:   CRC Press
Weight:   0.712kg
ISBN:  

9780367408060


ISBN 10:   0367408066
Pages:   416
Publication Date:   21 August 2020
Audience:   College/higher education ,  Tertiary & Higher Education ,  Undergraduate
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

1. Overview of CFD. 2. Governing Equations and Classification of PDE. 3. Finite Difference Method - Fundamentals. 4. Finite Difference Methods - Application. 5. Finite Volume Method. 6. Solution of Incompressible Navier-Stokes Equations. 7. Finite Volume Method for Complex Geometries. 8. Solution of Algebraic Equations. 9. Turbulence Modelling. 10. Grid Generation. 11. Best Practice Guidelines in CFD. Appendix 1. Area and Volume Calculation. Appendix 2. Transformation of Governing Equations to Generalized Curvilinear Coordinates. Appendix 3. Review of Vector Calculus. Appendix 4. Case Studies. References. Index.

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Author Information

D. G. Roychowdhury is currently working as executive director at the Sharda Group of Institutions, Agra, India. He received his Ph.D. from the Indian Institute of Technology, Madras,, India. Before joining the Sharda Group, he worked as Scientist at the Indira Gandhi Centre for Atomic Research, Kalpakkam, India; as a Research Associate at the University of Warwick, in England; and as Professor and Dean at the Hindustan Institute of Technology & Science, Chennai, India. His research areas include computational fluid dynamics, heat transfer, and thermal-hydraulic analysis of fast reactor core under normal and off-normal events. He has taught courses including thermodynamics, fluid mechanics, advanced fluid mechanics and computational fluid dynamics at undergraduate and graduate level. He has authored several research papers in peer reviewed journals.

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