Workshop Abstracts and Presentations
| Naval Hydrodynamics / Coastal / Offshore |
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| A Numerical Study on Self-propulsion Simulations using OpenFOAM (Geon-Hong Kim) |
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| Flow Resistance and Seakeeping Advanced Optimization of Ship Hull using HELYX-Ecomarine (Paolo Geremia) |
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| A study of Computational Schemes for Six Degree-of-Freedom Motion of a Ship in Waves using OpenFOAM (Heebum Lee) |
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| Use of OpenFOAM at Virgina Tech for AOE Discovery and Learning (Eric Paterson) |
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| Decomposition Model for Naval Hydrodynamics: Recent Advances (Vuko Vukcevic) |
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| Implementation of Higher Order Spectral method for nonlinear wave propagation in OpenFOAM (Inno Gatin) |
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| Offshore Drilling Riser 2-D Drag Modelling (Lawrence Lai) |
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Turbulence Modeling / Sprays / Solid-Liquid Mixing
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| Large-Eddy Simulation of Turbulent Channel Flow with OpenFOAM (Timofey Mukha) |
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| OpenFOAM® as a development platform for enhanced hybrid RANS-LES approaches (Marian Fuchs) |
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| Investigation of viscous solid-liquid mixing in agitated vessels using CFD-DEM: Model formulation and experimental validation (B. Blais) |
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| Complex Materials |
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| Using OpenFOAM to Aid the Design of Complex Profile Extrusion Dies (A. Rajkumar) |
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| Flow Distribution in Bifurcations: the role of elasticity (Luis Ferrás) |
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| Simulation of viscoelastic flows at high Weissenberg number using a generic numerical stabilization framework (Matthias Niethammer) |
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| Influence of shear rate, temperature and pressure dependent material behavior of polymer materials on the production process (József Nagy) |
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| Modelling Integral Viscoelastic Flows in OpenFOAM (M. S. B. Araujo) |
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| Pre-Processing / Post-Processing / Meshing |
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| Assessment of automatic mesh generation algorithm using snappyHexMesh 2.3 (Daniel Piaget) |
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| Evolving HELYX-OS, the Open-Source Graphical User Interface for OpenFOAM® (Paolo Geremia) |
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| Integration of ADIOS into OpenFOAM for handling Disk I/O (Karl Meredith) |
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| Advances in anisotropic mesh generation with arbitrary polyhedra in cfMesh (Franjo Juretic) |
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| Preparing SolidWorks Models for Use with SnappyHexMesh / Using the FEMAP NASTRAN FEA Pre-Processor to Prepare Meshes for OpenFOAM (Daniel Mather) |
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| General CFD |
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| The Simulation of Electromagnetic-Acoustic Wave Interaction in OpenFOAM (Dominic Piro) |
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| Swirling pipe-flow for metrology applications: Validation of simulations with laser-Doppler velocimetry experiments (Denis F. Hinz) |
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| Evaluation of the Mixing Plane technology: application for distributor-runner channel (Christophe Devals) |
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| Geometric Immersed Boundaries (GIB): A New framework for applying boundary conditions in OpenFOAM® (Giorgos Karpouzas) |
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| An integrated lattice Boltzmann and finite volume method for the simulation of viscoelastic fluid flows (Chao Li) |
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| Numerical Model of Hydrodynamic Lubrication Process (Vanja Skuric) |
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| Verification of OpenFoam Diffusion Operator in Different Geometries and Reconstruction Methods (Harold Noriega) |
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| Emulating CFD in buildings to rapidly analyze human heat stress in future weather (Edward Shorthouse) |
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| Improvements of the Interpolation and Non-Orthogonal Correction Schemes in Caelus (Chris Sideroff) |
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| Lagrangian Methods |
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| Aerosol Jet® material deposition behavior simulated with an OpenFOAM® Lagrangian solver (James Feng) |
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| An Immersed Boundary Method in OpenFOAM® for Arbitrarily Shaped Lagrangian Bodies Taking Account of Contact Dynamics and Volumetrically Resolved Potential Forces (Markus Burger) |
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| Dispersion of Fillers in Viscoelastic Polymer Matrices using Eulerian-Lagrangian Approaches (C. Fernandes) |
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| Basic Implementation of Particle-Based Membrane Model for Membrane Deformation Analysis (Shinji Nakagawa) |
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| Evaluation of the DPMFoam solver (Denis Semyonov) |
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| Heat Transfer / Phase Change / Reacting Flows |
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| DNS of Reactive Mass Transfer and Interfacial Surfactant Transport for Single Rising Bubbles (Holger Marschall) |
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| Simulation of an ingot growth in the electron beam furnace (Alexey Matveichev) |
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| Modeling Turbulent Combustion in a Rotary Kiln (Ali Kadar) |
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| Simulating Shear Induced Platelet Aggregation with OpenFOAM (Rudolf Hellmuth) |
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| GUI driven CHT solver UI for transformer – Combination of FEMM and OpenFOAM (Hyun Roh) |
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| Fluid-Structure Interaction / Structural Analysis |
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| Simulation of Fractures in OpenFOAM: From Adhesive Joints to Hydraulic Fractures (Philip Cardiff) |
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| Numerical Simulation of Contact Angle Hysteresis with OpenFOAM® (Thomas Maurer) |
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| Modeling and simulation of a gas-solid cyclone during an upset event (Arthur N’Dri Konan) |
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| Predicting surface evolution in erosion processes with OpenFOAM® (Alejandro Lopez) |
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| Verification and validation of thermocapillary flow instability in straight and deformed liquid bridges (Takuya Yamamoto) |
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| Compressible Flows |
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| Direct Simulation of Computational Aero-Acoustics (Eugene de Villiers) |
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| Large eddy simulation of a high-pressure multi-jet combustor using flamelet modeling (Yihao Tang) |
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| A solver for Magnetohydrodynamic Generation Channel Simulation (David Huckaby) |
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| A framework for compressible hybrid RANS/LES simulations in topologically changing grids (Andrea Montorfano) |
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| Coupled solver for modelling high-speed, compressible flow (Johan Heyns) |
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| Engine and Pumps |
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| NeuroPaSR, A New Combustion Model for Diesel-Engine (S. Kheradmand) |
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| In-cylinder Turbulent Airflow Simulation of Internal Combustion Engine with Moving Boundary Technique in OpenFOAM (Tomoyuki Hosaka) |
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| Aerodynamics |
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| A New approach to Actuator Surface Method for Helicopter Rotor Analysis (Taewoo Kim) |
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| Numerical Study on Vortex Alleviation of Tip Chipped Wing using OpenFOAM (Nahyeon Roh) |
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| Estimation of Aerodynamic Coefficients of Axisymmetric Projectiles from a Coupled Rigid Body Dynamics-CFD Solver (Adriaan Steenkamp) |
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| Analysis of Supersonic, Reacting, Base Flow-fields for Axisymmetric Projectiles (Adriaan Steenkamp) |
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| Aerodynamic Characteristics of Ahmed Body in Road Situations (R. Manimaran) |
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| Free Surface and Multiphase Flows |
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| Development of Phase Field Methods using OpenFOAM® – Part I: Method Development and Implementation (Holger Marschall) |
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| Development of Phase Field Methods using OpenFOAM® Part II: Application to Complex Wetting Physics (Xuan Cai) |
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| Implementation of a moving immersed boundary method on a dynamically refining mesh with automatic load balancing (Kyle Mooney) |
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| A 3D Numerical Model of Two-Phase Flow and Sediment Transport (Vanja Skuric) |
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| Droplet ejection from capillary nozzle (Duc Nguyen) |
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| Block Coupled Solvers and Periodic Flows |
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| Coupled Solver v2: on the robustness and performance improvements for incompressible and compressible flows (Luca Mangani) |
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| Validation of Pressure-Velocity Coupled Solver on Racing Car Aerodynamics (Tessa Uroic) |
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| Harmonic Balance Method for Unsteady Periodic Flows (Gregor Cvijetic) |
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Workshop Posters
| Implementation of the Higher Order Spectral Method for Nonlinear Wave Propagation in FOAM for Freak Wave Simulations (Inno Gatin) |
Poster |
| Validation of Pressure-Velocity Coupled Solver on Racing Car Aerodynamics (Tessa Uroic) |
Poster |
| Optimisation of a Turbine Blade with Mesh Morphing (Tessa Uroic) |
Poster |
| Harmonic Balance Method for Unsteady Periodic Flows (Gregor Cvijetic) |
Poster |
| Numerical Model of Sediment Transport in Free Surface Flow (Vanja Skuric) |
Poster |
| Numerical Model of Hydrodynamic Lubrication (Vanja Skuric) |
Poster |
| Interface Jump Conditions: Eliminating Spurious Velocities in Free Surface Flows (Vuko Vukcevic) |
Poster |