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Computational fluid dynamics: principles and applications

Computational fluid dynamics: principles and applications
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Barcode Shelf Location Collection Volume Ref. Branch Status Due Date Res.
10022750 Access this eBook online Ebook for Engineering   GUtech Library . . Available .  
. Catalogue Record 9468 ItemInfo Beginning of record . Catalogue Record 9468 ItemInfo Top of page .
Catalogue Information
Field name Details
ISBN 9780128011720
9780080999951
Author Blazek, Jiri
Title Computational fluid dynamics : principles and applications
3rd ed.
Description 1 online resource (466 pages)
Contents Front Cover -- Computational Fluid Dynamics: Principles and Applications -- Copyright -- Contents -- Acknowledgments -- List of Symbols -- Abbreviations -- Chapter 1: Introduction -- Chapter 2: Governing Equations -- 2.1 The Flow and Its Mathematical Description -- 2.1.1 Finite control volume -- 2.2 Conservation Laws -- 2.2.1 The continuity equation -- 2.2.2 The momentum equation -- 2.2.3 The energy equation -- 2.3 Viscous Stresses -- 2.4 Complete System of the Navier-Stokes Equations -- 2.4.1 Formulation for a perfect gas -- 2.4.2 Formulation for a real gas -- 2.4.3 Simplifications to the Navier-Stokes equations -- Thin shear layer approximation -- Parabolized Navier-Stokes equations -- Euler equations -- References -- Chapter 3: Principles of Solution of the Governing Equations -- 3.1 Spatial Discretization -- 3.1.1 Finite-difference method -- 3.1.2 Finite-volume method -- 3.1.3 Finite-element method -- 3.1.4 Other discretization methods -- Spectral-element method -- Lattice Boltzmann method -- Gridless method -- 3.1.5 Central and upwind schemes -- Central schemes -- Upwind schemes -- Flux-vector splitting schemes -- Flux-difference splitting schemes -- TVD Schemes -- Fluctuation-splitting schemes -- Solution reconstruction -- First- and second-order schemes -- ENO/WENO Schemes -- Central versus upwind schemes -- Upwind schemes for real gas flows -- 3.2 Temporal Discretization -- 3.2.1 Explicit schemes -- 3.2.2 Implicit schemes -- 3.3 Turbulence Modeling -- 3.4 Initial and Boundary Conditions -- References -- Chapter 4: Structured Finite-Volume Schemes -- 4.1 Geometrical Quantities of a Control Volume -- 4.1.1 Two-dimensional case -- 4.1.2 Three-dimensional case -- 4.2 General Discretization Methodologies -- 4.2.1 Cell-centered scheme -- 4.2.2 Cell-vertex scheme: overlapping control volumes -- 4.2.3 Cell-vertex scheme: dual control volumes.
Subject Fluid dynamics -- Computer simulation
Fluid dynamics -- Data processing
Fluid dynamics -- Mathematical models
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