Computation of viscous incompressible flows

This monograph is intended as a concise and self-contained guide to practitioners and graduate students for applying approaches in computational fluid dynamics (CFD) to real-world problems that require a quantification of viscous incompressible flows. In various projects related to NASA missions, th...

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Bibliografiske detaljer
Auteurs principaux: Kwak, Dochan, Cetin, Kiris C. (Auteur)
Format: Livre numérique
Sprog:Anglais
Udgivet: Dordrecht : Springer Netherlands 2011.
Cham : Springer Nature
Serier:Scientific Computation
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Edition sous un autre format:• Computation of Viscous Incompressible Flows, Texte imprimé, 9789400734227
• Computation of Viscous Incompressible Flows, Texte imprimé, 9789400701946
• Computation of Viscous Incompressible Flows, by Dochan Kwak, Cetin C. Kiris, Dordrecht, Springer, Cop. 2011, 2011, 1 vol. (XVI-285 p.), Scientific Computation, 978-94-0070192-2
Indholdsfortegnelse:
  • 1
  • Introduction: Flow Physics; Computational Approach; What is Covered in The Monograph
  • 2
  • Methods for Solving Viscous Incompressible Flow Problems: Overview; Mathematical Model; Formulation for General Geometry; Overview of Solution Approaches
  • 3
  • Pressure Projection Method in Generalized Coordinates: Overview; Formulation in Integral Form; Discretization ; Solution Procedure; Validation of the Solution Procedure
  • 4
  • Artificial Compressibility Method: Formulation and Its Physical Characteristics; Steady-State Formulation; Steady-state Algorithm ; Time-Accurate Procedure; Time-Accurate Algorithm Using Upwind Differencing; Validation of Solution Procedure; Unified Formulation
  • 5
  • Flow Solvers and Validation: Scope of Validation; Selection of Codes for Engineering Applications; Steady Internal Flow: Curved Duct with Square Cross-Section; Time-Dependent Flow; External and Juncture Flow
  • 6
  • Simulation of Liquid-Propellant Rocket Engine Sub-System: Historical Background; Flow Analysis in the Space Shuttle Main Engine (SSME); Flow Analysis Task and Computational Model for the SSME Powerhead; Turbulence Modeling Issues; Analysis of the Original Three-Circular-Duct HGM Configuration; Development of the New Two Elliptic-Duct HGM Configuration
  • 7
  • Turbo-pump: Historical Background; Turbo-pump in Liquid-Propellant Rocket Engine; Mathematical Formulation; Validation of Simulation Procedures Using an Inducer; Application to Impeller Simulation; High-Fidelity Unsteady Flow Application to SSME Flowliners
  • 8
  • Hemodynamics: Introduction; Model Equations for Blood Flow Simulation; Validation of Simulation Procedure; Blood Circulation in Human Brain; Simulation of Blood Flow in Mechanical Devices
  • References
  • Index.