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OpenFOAM®

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Cover of 'OpenFOAM®'

Table of Contents

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    Book Overview
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    Chapter 1 Added Mass Partitioned Fluid–Structure Interaction Solver Based on a Robin Boundary Condition for Pressure
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    Chapter 2 CAD-Based Parameterization for Adjoint Optimization
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    Chapter 3 Cavitating Flow in a 3D Globe Valve
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    Chapter 4 CFD Analysis and Optimisation of Tidal Turbine Arrays Using OpenFOAM $$^{\textregistered }$$
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    Chapter 5 Combining an OpenFOAM $$^{\textregistered }$$ -Based Adjoint Solver with RBF Morphing for Shape Optimization Problems on the RBF4AERO Platform
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    Chapter 6 Development of a Combined Euler-Euler Euler-Lagrange Slurry Model
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    Chapter 7 Development of Data-Driven Turbulence Models in OpenFOAM $${^{\textregistered }}$$ : Application to Liquid Fuel Nuclear Reactors
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    Chapter 8 Differential Heating as a Strategy for Controlling the Flow Distribution in Profile Extrusion Dies
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    Chapter 9 Drag Model for Coupled CFD-DEM Simulations of Non-spherical Particles
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    Chapter 10 Effects of Surface Textures on Gravity-Driven Liquid Flow on an Inclined Plate
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    Chapter 11 Enhanced Turbomachinery Capabilities for Foam-Extend: Development and Validation
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    Chapter 12 Evaluation of Energy Maximising Control Systems for Wave Energy Converters Using OpenFOAM $$^{\textregistered }$$
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    Chapter 13 Floating Potential Boundary Condition in OpenFOAM $$^{\textregistered }$$
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    Chapter 14 Fluid Dynamic and Thermal Modeling of the Injection Molding Process in OpenFOAM $$^{\textregistered }$$
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    Chapter 15 Free-Surface Dynamics in Induction Processing Applications
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    Chapter 16 GEN-FOAM: An OpenFOAM®-Based Multi-physics Solver for Nuclear Reactor Analysis
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    Chapter 17 Harmonic Balance Method for Turbomachinery Applications
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    Chapter 18 Implementation of a Flexible and Modular Multiphase Framework for the Analysis of Surface-Tension-Driven Flows Based on a Hybrid LS-VOF Approach
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    Chapter 19 Implicitly Coupled Pressure–Velocity Solver
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    Chapter 20 Improving the Numerical Stability of Steady-State Differential Viscoelastic Flow Solvers in OpenFOAM $$^{\textregistered }$$
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    Chapter 21 IsoAdvector: Geometric VOF on General Meshes
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    Chapter 22 Liquid Atomization Modeling in OpenFOAM $$^{\textregistered }$$
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    Chapter 23 Lubricated Contact Model for Cold Metal Rolling Processes
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    Chapter 24 Modeling of Turbulent Flows in Rectangular Ducts Using OpenFOAM®
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    Chapter 25 Numerical Approach for Possible Identification of the Noisiest Zones on the Surface of a Centrifugal Fan Blade
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    Chapter 26 Numerical Modeling of Flame Acceleration and Transition from Deflagration to Detonation Using OpenFOAM®
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    Chapter 27 Open-Source 3D CFD of a Quadrotor Cyclogyro Aircraft
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    Chapter 28 A Review of Shape Distortion Methods Available in the OpenFOAM $$^{\textregistered }$$ Framework for Automated Design Optimisation
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    Chapter 29 Simulating Polyurethane Foams Using the MoDeNa Multi-scale Simulation Framework
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    Chapter 30 Simulation of a Moving-Bed Reactor and a Fluidized-Bed Reactor by DPM and MPPIC in OpenFOAM®
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    Chapter 31 Simulation of Particulate Fouling and its Influence on Friction Loss and Heat Transfer on Structured Surfaces using Phase-Changing Mechanism
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    Chapter 32 solidificationMeltingSource: A Built-in fvOption in OpenFOAM® for Simulating Isothermal Solidification
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    Chapter 33 Study of OpenFOAM $$^{\textregistered }$$ Efficiency for Solving Fluid–Structure Interaction Problems
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    Chapter 34 The Harmonic Balance Method for Temporally Periodic Free Surface Flows
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    Chapter 35 Two-Way Coupled Eulerian–Eulerian Simulations of a Viscous Snow Phase with Turbulent Drag
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    Chapter 36 Use of OpenFOAM® for the Investigation of Mixing Time in Agitated Vessels with Immersed Helical Coils
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    Chapter 37 Wind Turbine Diffuser Aerodynamic Study with OpenFOAM $$^{\textregistered }$$
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