Finite Element Analysis Of Steady Incompressible Non Newtonian Fluid Flow And Heat Transfer


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Finite element analysis of steady, incompressible, non-Newtonian fluid flow and heat transfer


Finite element analysis of steady, incompressible, non-Newtonian fluid flow and heat transfer

Author: Vuppuluri Dakshina Murty

language: en

Publisher:

Release Date: 1982


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The Finite Element Method for Fluid Dynamics


The Finite Element Method for Fluid Dynamics

Author: O. C. Zienkiewicz

language: en

Publisher: Elsevier

Release Date: 2005-12-08


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Dealing with general problems in fluid mechanics, convection diffusion, compressible and incompressible laminar and turbulent flow, shallow water flows and waves, this is the leading text and reference for engineers working with fluid dynamics in fields including aerospace engineering, vehicle design, thermal engineering and many other engineering applications. The new edition is a complete fluids text and reference in its own right. Along with its companion volumes it forms part of the indispensable Finite Element Method series.New material in this edition includes sub-grid scale modelling; artificial compressibility; full new chapters on turbulent flows, free surface flows and porous medium flows; expanded shallow water flows plus long, medium and short waves; and advances in parallel computing. - A complete, stand-alone reference on fluid mechanics applications of the FEM for mechanical, aeronautical, automotive, marine, chemical and civil engineers. - Extensive new coverage of turbulent flow and free surface treatments

The Finite Element Method in Heat Transfer and Fluid Dynamics


The Finite Element Method in Heat Transfer and Fluid Dynamics

Author: J. N. Reddy

language: en

Publisher: CRC Press

Release Date: 2010-04-06


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As Computational Fluid Dynamics (CFD) and Computational Heat Transfer (CHT) evolve and become increasingly important in standard engineering design and analysis practice, users require a solid understanding of mechanics and numerical methods to make optimal use of available software. Considered to be among the very best in the field, this masterwork from renowned experts J. N. Reddy and D. K. Gartling is the latest version of a book that has long been relied upon by practicing engineers, researchers, and graduate students. Noted for its powerful methodology and clear explanations of the subject, this third edition contains considerably more workable exercises and examples associated with problems in heat conduction, incompressible viscous flow, and convection heat transfer. It also uses applied examples to illustrate applications of FEM in thermal and fluid design analysis.