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Overview of attention for book
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 $$^{\textregistered }$$
Overall attention for this book and its chapters
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Mentioned by

15 tweeters
1 Facebook page


1 Dimensions

Readers on

656 Mendeley
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Published by
Springer International Publishing, May 2018
DOI 10.1007/978-3-319-60846-4
978-3-31-960845-7, 978-3-31-960846-4

Nóbrega, J. Miguel, Jasak, Hrvoje

Twitter Demographics

The data shown below were collected from the profiles of 15 tweeters who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 656 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 5 <1%
United States 3 <1%
Japan 3 <1%
Netherlands 2 <1%
Brazil 2 <1%
Germany 2 <1%
Denmark 2 <1%
Canada 1 <1%
Argentina 1 <1%
Other 4 <1%
Unknown 631 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 183 28%
Student > Master 143 22%
Researcher 74 11%
Student > Bachelor 54 8%
Student > Doctoral Student 37 6%
Other 82 13%
Unknown 83 13%
Readers by discipline Count As %
Engineering 388 59%
Physics and Astronomy 26 4%
Chemical Engineering 19 3%
Energy 17 3%
Computer Science 14 2%
Other 76 12%
Unknown 116 18%