OpenFOAM® : selected papers of the 11th Workshop /: selected papers of the 11th Workshop. (2019)
- Record Type:
- Book
- Title:
- OpenFOAM® : selected papers of the 11th Workshop /: selected papers of the 11th Workshop. (2019)
- Main Title:
- OpenFOAM® : selected papers of the 11th Workshop
- Further Information:
- Note: J. Miguel Nóbrega, Hrvoje Jasak, editors.
- Editors:
- Nóbrega, J. Miguel
Jasak, Hrvoje - Other Names:
- OpenFOAM (Workshop), 11th
- Contents:
- Intro; Preface; Contents; Added Mass Partitioned Fluid-Structure Interaction Solver Based on a Robin Boundary Condition for Pressure; 1 Introduction; 2 Mathematical Model; 2.1 Fluid Governing Equations; 2.2 Solid Governing Equations; 2.3 Conditions at the Fluid-Solid Interface; 2.4 Robin Boundary Condition for Pressure; 3 Numerical Model; 3.1 Discretisation of the Computational Domain; 3.2 Discretisation of the Governing Equations; 3.3 Solution Procedure for Fluid and Solid Models; 3.4 Solution Procedure for Fluid-Structure Interaction; 4 Numerical Results 4.1 Wave Propagation in an Elastic Tube4.2 Enclosed Domain: A Balloon-Type Problem; 5 Conclusions; References; CAD-Based Parameterization for Adjoint Optimization; 1 Introduction; 1.1 Boundary Representation; 1.2 NURBS Curves and Surfaces; 1.3 Connecting CAD to CFD; 2 Meshing of the CAD Surfaces; 2.1 Using Dimensionless Parameters; 2.2 Using an Octree Mesh as a Background Mesh; 2.3 Using the Advancing Front Method for Meshing the Surfaces; 3 Changing the Shape of BRep Models; 3.1 Adjoint-Based Optimization and the Continuous Adjoint Technique; 3.2 Volumetric NURBS Free Form Deformation 3.3 Fitting the Displaced Surface Mesh4 Conclusions; References; Cavitating Flow in a 3D Globe Valve; 1 Introduction; 2 Numerical Approach; 2.1 Governing Equations; 2.2 Cavitation Model; 2.3 Turbulence Model; 2.4 Computational Domain; 2.5 Numerical Methodology; 3 Results; 3.1 Operating Conditions; 3.2 Influence of Turbulence on pv; 3.3 FlowIntro; Preface; Contents; Added Mass Partitioned Fluid-Structure Interaction Solver Based on a Robin Boundary Condition for Pressure; 1 Introduction; 2 Mathematical Model; 2.1 Fluid Governing Equations; 2.2 Solid Governing Equations; 2.3 Conditions at the Fluid-Solid Interface; 2.4 Robin Boundary Condition for Pressure; 3 Numerical Model; 3.1 Discretisation of the Computational Domain; 3.2 Discretisation of the Governing Equations; 3.3 Solution Procedure for Fluid and Solid Models; 3.4 Solution Procedure for Fluid-Structure Interaction; 4 Numerical Results 4.1 Wave Propagation in an Elastic Tube4.2 Enclosed Domain: A Balloon-Type Problem; 5 Conclusions; References; CAD-Based Parameterization for Adjoint Optimization; 1 Introduction; 1.1 Boundary Representation; 1.2 NURBS Curves and Surfaces; 1.3 Connecting CAD to CFD; 2 Meshing of the CAD Surfaces; 2.1 Using Dimensionless Parameters; 2.2 Using an Octree Mesh as a Background Mesh; 2.3 Using the Advancing Front Method for Meshing the Surfaces; 3 Changing the Shape of BRep Models; 3.1 Adjoint-Based Optimization and the Continuous Adjoint Technique; 3.2 Volumetric NURBS Free Form Deformation 3.3 Fitting the Displaced Surface Mesh4 Conclusions; References; Cavitating Flow in a 3D Globe Valve; 1 Introduction; 2 Numerical Approach; 2.1 Governing Equations; 2.2 Cavitation Model; 2.3 Turbulence Model; 2.4 Computational Domain; 2.5 Numerical Methodology; 3 Results; 3.1 Operating Conditions; 3.2 Influence of Turbulence on pv; 3.3 Flow Topology; 3.4 Flow Curve; 3.5 Forces on the Stem; 4 Conclusions; References; CFD Analysis and Optimisation of Tidal Turbine Arrays Using OpenFOAM®; 1 Introduction; 1.1 Esturine Tidal Energy; 1.2 Lift/Drag Turbine; 1.3 Project Aims; 2 Detailed CFD 3 Immersed Body Force Method3.1 Validation; 3.2 Farm Modelling; 4 Optimisation; 5 Conclusions; References; Combining an OpenFOAM®-Based Adjoint Solver with RBF Morphing for Shape Optimization Problems on the RBF4AERO Platform; 1 Introduction; 2 Continuous Adjoint Formulation; 3 RBF-Based Morphing; 4 Optimization Algorithm; 5 Applications; 6 Conclusions; References; Development of a Combined Euler-Euler Euler-Lagrange Slurry Model; 1 Introduction; 2 Current OpenFOAM Models; 3 Solver Development; 3.1 Mesh/Baffles/Regions; 3.2 Interpolation; 3.3 Addition of Particles to the Solver … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2019
- Extent:
- 1 online resource (x, 536 pages), illustrations (some color)
- Subjects:
- 620.1/064
Computational fluid dynamics -- Computer programs -- Congresses
Electronic books
Electronic books - Languages:
- English
- ISBNs:
- 9783319608464
3319608460 - Related ISBNs:
- 9783319608457
- Notes:
- Note: Online resource; title from PDF title page (SpringerLink, viewed February 4, 2019).
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.383926
- Ingest File:
- 02_366.xml