The Finite Element Method for Fluid Dynamics O. C. Zienkiewicz, R. L. Taylor, P. Nithiarasu.

By: Zienkiewicz, O. C [author.]Contributor(s): Taylor, Robert L. (Robert Leroy), 1934- [author.] | Nithiarasu, Perumal [author.]Material type: TextTextPublisher: Oxford : Butterworth-Heinemann, [2014]Copyright date: ©2014Edition: 7th edDescription: xxxvi, 544 pages : illustrations ; 24 cmContent type: text Media type: unmediated Carrier type: volumeISBN: 9789351072317Subject(s): Finite element method | Fluid dynamics | Fluid dynamics -- Mathematical modelsDDC classification: 620.10601 LOC classification: TA640.2 | .Z52 2014
Contents:
Introduction to the equations of fluid dynamics and the finite element approximation -- Convection-dominated problems : finite element approximations to the convection-diffusion-reaction equation -- The characteristic-based split (CBS) algorithm : a general procedure for compressible and incompressible flow -- Incompressible Newtonian laminar flows -- Incompressible non-Newtonian flows -- Free surface and buoyancy driven flows -- Compressible high-speed gas flow -- Turbulent flows -- Generalized flow and heat transfer in porous media -- Shallow-water problems -- Long and medium waves -- Short waves -- Fluid-structure interaction -- Biofluid dynamics -- Computer implementation of the CBS algorithm.
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Book Book School of Mechanical & Manufacturing Engineering (SMME)
School of Mechanical & Manufacturing Engineering (SMME)
General Stacks 620.10601 ZIE (Browse shelf) Available Rack,43-Shelf,4 SMME-3484
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Includes bibliographical references and index.

Introduction to the equations of fluid dynamics and the finite element approximation -- Convection-dominated problems : finite element approximations to the convection-diffusion-reaction equation -- The characteristic-based split (CBS) algorithm : a general procedure for compressible and incompressible flow -- Incompressible Newtonian laminar flows -- Incompressible non-Newtonian flows -- Free surface and buoyancy driven flows -- Compressible high-speed gas flow -- Turbulent flows -- Generalized flow and heat transfer in porous media -- Shallow-water problems -- Long and medium waves -- Short waves -- Fluid-structure interaction -- Biofluid dynamics -- Computer implementation of the CBS algorithm.

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