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In This Volume
Volume 2: CFD and FSI
CFD and FSI
Advanced Computation: Optimization, Big Data, Machine Learning
Application of GPGPU to Accelerate CFD Simulation
OMAE 2018; V002T08A001https://doi.org/10.1115/OMAE2018-77649
Prediction of Extreme Wave Slamming Loads on a Fixed Platform
OMAE 2018; V002T08A002https://doi.org/10.1115/OMAE2018-78179
Topics:
Stress
,
Waves
,
Seas
,
Dynamics (Mechanics)
,
Simulation
,
Computational fluid dynamics
,
Computer software
,
Design
,
Fluids
,
Ocean engineering
A Novel Deep Learning Method for the Predictions of Current Forces on Bluff Bodies
OMAE 2018; V002T08A003https://doi.org/10.1115/OMAE2018-78338
Topics:
Approximation
,
Artificial neural networks
,
Computation
,
Design
,
Drag (Fluid dynamics)
,
Errors
,
Feedback
,
Flow (Dynamics)
,
Flow control
,
Fluids
Data-Driven Computing With Convolutional Neural Networks for Two-Phase Flows: Application to Wave-Structure Interaction
OMAE 2018; V002T08A005https://doi.org/10.1115/OMAE2018-78425
Topics:
Artificial neural networks
,
Two-phase flow
,
Waves
,
Fluids
,
Wave forces
,
Computational fluid dynamics
,
Design
,
Modeling
,
Ocean engineering
,
Shapes
Advanced Computation: Software
FSI Analysis the Dynamic Performance of Composite Propeller
OMAE 2018; V002T08A006https://doi.org/10.1115/OMAE2018-77108
Topics:
Composite materials
,
Fluid structure interaction
,
Propellers
,
Marine propellers
,
Aluminum
,
Bronze
,
Nickel
,
Screws
,
Cavitation
,
Computer software
Development of a Lifting-Line-Based Method for Preliminary Propeller Design
Jose Rodolfo Chreim, Marcos de Mattos Pimenta, Joao Lucas Dozzi Dantas, Gustavo R. S. Assi, Eduardo Tadashi Katsuno
OMAE 2018; V002T08A008https://doi.org/10.1115/OMAE2018-77995
Topics:
Design
,
Propellers
,
Thrust
,
Torque
,
Blades
,
Hydrofoil
,
Marine propellers
,
Viscosity
,
Wings
Advanced Computation: Verification, Validation, and Best Practices
A Study on Fluid-Structure Interaction Performance of a Flexible Hydrofoil
OMAE 2018; V002T08A011https://doi.org/10.1115/OMAE2018-78522
Topics:
Fluid structure interaction
,
Hydrofoil
,
Turbulence
,
Vibration
,
Bubbles
,
Deformation
,
Drag (Fluid dynamics)
,
Flow (Dynamics)
,
Pressure
,
Separation (Technology)
Validation Exercises for a Free Falling Wedge Into Calm Water
OMAE 2018; V002T08A013https://doi.org/10.1115/OMAE2018-78598
Topics:
Water
,
Wedges
,
Sensors
,
Errors
,
Pressure
,
Simulation
,
Uncertainty
,
Modeling
,
Boundary-value problems
,
Flow (Dynamics)
Free Surface Flows
Boom Overtopping Assessment Based on a Coupled Hydrodynamic - CFD Analysis
OMAE 2018; V002T08A019https://doi.org/10.1115/OMAE2018-77848
Topics:
Computational fluid dynamics
,
Waves
,
Oceans
,
Design
,
Dynamics (Mechanics)
,
Elasticity
,
Mooring
,
Plastic scrap
,
Pollution
,
Water
Generation of Regular and Irregular Waves in Navier-Stokes CFD Solvers by Matching With the Nonlinear Potential Wave Solution at the Boundaries
Youngmyung Choi, Benjamin Bouscasse, Sopheak Seng, Guillaume Ducrozet, Lionel Gentaz, Pierre Ferrant
OMAE 2018; V002T08A020https://doi.org/10.1115/OMAE2018-78077
Topics:
Computational fluid dynamics
,
Waves
,
Viscous flow
,
Simulation
,
Absorption
,
Flow (Dynamics)
,
Gulf of Mexico
,
Nonlinear waves
,
Ocean engineering
,
Oceans
Efficient Wave Modeling Using Non-Hydrostatic Pressure Distribution and Free Surface Tracking on Fixed Grids
OMAE 2018; V002T08A021https://doi.org/10.1115/OMAE2018-78158
Topics:
Hydrostatics
,
Modeling
,
Pressure
,
Waves
,
Simulation
,
Computational fluid dynamics
,
Computer simulation
,
Water
,
Wave forces
,
Wave propagation
Propagation of Steep and Breaking Short-Crested Waves: A Comparison of CFD Codes
OMAE 2018; V002T08A022https://doi.org/10.1115/OMAE2018-78288
Topics:
Computational fluid dynamics
,
Waves
,
Fluids
,
Computation
,
Fittings
,
Kinematics
,
Nonlinear waves
,
Ocean waves
,
Offshore structures
,
Water waves
Numerical Simulation of Three-Layer-Liquid Sloshing by Multiphase MPS Method
OMAE 2018; V002T08A024https://doi.org/10.1115/OMAE2018-78387
Topics:
Computer simulation
,
Sloshing
,
Density
,
Particulate matter
,
Viscosity
,
Engineering simulation
,
Fluids
,
Multiphase flow
,
Simulation
,
Smoothing methods
Risers and Pipelines
Slug Flow-Induced Oscillation in Subsea Catenary Riser Experiencing VIV
OMAE 2018; V002T08A027https://doi.org/10.1115/OMAE2018-77298
Topics:
Flow (Dynamics)
,
Ocean engineering
,
Oscillations
,
Pipeline risers
,
Risers (Casting)
,
Slug flows
,
Vortex-induced vibration
,
Excitation
,
Pipes
,
Steady state
3-D Numerical Simulations of Subsea Jumper Transporting Intermittent Slug Flows
OMAE 2018; V002T08A028https://doi.org/10.1115/OMAE2018-77299
Topics:
Computer simulation
,
Ocean engineering
,
Slug flows
,
Pipes
,
Pressure
,
Deformation
,
Design
,
Fluids
,
Resonance
,
Dynamic response
Large Eddy Simulation of Cross Flow in Pipe Junction
OMAE 2018; V002T08A031https://doi.org/10.1115/OMAE2018-77751
Topics:
Cross-flow
,
Junctions
,
Large eddy simulation
,
Pipes
,
Flow (Dynamics)
,
Design
,
Navier-Stokes equations
,
Vortices
Numerical Investigation of Local Scour Around Submerged Pipeline in Shoaling Conditions
OMAE 2018; V002T08A032https://doi.org/10.1115/OMAE2018-78440
Topics:
Pipelines
,
Seabed
,
Water
,
Computer simulation
,
Stress
,
Underwater pipelines
,
Water waves
,
Waves
,
Reynolds-averaged Navier–Stokes equations
,
Sediments
Ship and Floating Systems
Scale Effects on Ship Maneuverability Using RANS
OMAE 2018; V002T08A033https://doi.org/10.1115/OMAE2018-77191
Study on the Porpoising Phenomenon of High-Speed Trimaran Planing Craft
OMAE 2018; V002T08A034https://doi.org/10.1115/OMAE2018-77216
Topics:
Boats
,
Center of mass
,
Computational fluid dynamics
,
Damage
,
Engineering simulation
,
Flow (Dynamics)
,
Gravity (Force)
,
Hull
,
Lift (Fluid dynamics)
,
Pressure
Experimental Study on Vortex-Induced Vibration of Floating Circular Cylinders With Low Aspect Ratio and Different Free-End Corner Shapes
Rodolfo T. Gonçalves, Keigo Sakata, Dennis M. Gambarine, Murilo M. Cicolin, Shinichiro Hirabayashi, Gustavo R. S. Assi
OMAE 2018; V002T08A035https://doi.org/10.1115/OMAE2018-77218
Topics:
Circular cylinders
,
Corners (Structural elements)
,
Shapes
,
Vortex-induced vibration
,
Cylinders
,
Damping
,
Reynolds number
,
Springs
,
Water
Unsteady Viscous CFD Simulations of KCS Behaviour and Performance in Head Seas
OMAE 2018; V002T08A040https://doi.org/10.1115/OMAE2018-77330
Topics:
Computational fluid dynamics
,
Seas
,
Simulation
,
Ships
,
Reynolds-averaged Navier–Stokes equations
,
Waves
,
Computation
,
Containers
,
Degrees of freedom
,
Delays
A Numerical Investigation of Wedge Angle Effects on a Plunger Type Wave Maker With a Constant Submerged Volume
OMAE 2018; V002T08A043https://doi.org/10.1115/OMAE2018-77380
Topics:
Waves
,
Wedges
,
Algorithms
,
Fluids
,
Momentum
,
Navier-Stokes equations
,
Numerical analysis
,
Pressure
,
Water
,
Wave amplitude
Modelling and Simulation of Moored-Floating Structures Using the Tension-Element-Method
OMAE 2018; V002T08A045https://doi.org/10.1115/OMAE2018-77776
Topics:
Modeling
,
Mooring
,
Simulation
,
Tension
,
Floating structures
,
Cables
,
Fluid structure interaction
,
Approximation
,
Computational fluid dynamics
,
Hydrodynamics
Body Force Propeller Model for Unsteady Surge Motion
OMAE 2018; V002T08A046https://doi.org/10.1115/OMAE2018-78046
Topics:
Propellers
,
Surges
,
Computational fluid dynamics
,
Modeling
,
Reynolds-averaged Navier–Stokes equations
,
Water
,
Algorithms
,
Containers
,
Rotation
,
Ships
Research on Trailing Cavity of Underwater Vehicles Based on Potential Flow Theory
OMAE 2018; V002T08A050https://doi.org/10.1115/OMAE2018-78676
Topics:
Cavities
,
Flow (Dynamics)
,
Underwater vehicles
,
Vehicles
,
Cavitation
,
Gravity (Force)
,
Navigation
,
Pressure
,
Water
VIV Physics and Suppression
Investigation of Effect of Twisted Surface on Suppression of Vortex-Induced Motion of a Square Column
OMAE 2018; V002T08A051https://doi.org/10.1115/OMAE2018-77107
Topics:
Vortices
,
Turbulence
,
Flow (Dynamics)
,
Vortex shedding
,
Computer simulation
,
Design
,
Floating structures
,
Flow separation
,
Reynolds number
,
Safety
VIV Response and Fatigue Damage of Flexible Cylinders With Time-Varying Axial Tension
OMAE 2018; V002T08A052https://doi.org/10.1115/OMAE2018-77142
Topics:
Cylinders
,
Fatigue damage
,
Tension
,
Vortex-induced vibration
,
Computer simulation
,
Engineering design
,
Excitation
,
Fatigue analysis
,
Resonance
,
Stiffness
VIM Suppression for a FSR With a Co-Centric Porous Sheath Around the Buoyancy Can: Effects of Mesh Orientation and Diameter Ratio
OMAE 2018; V002T08A053https://doi.org/10.1115/OMAE2018-77251
Topics:
Buoyancy
,
Flow (Dynamics)
,
Computer software
,
Cross-flow
,
Locks (Waterways)
,
Metals
,
Pipeline risers
,
Risers (Casting)
,
Submersibles
,
Vortices
A Time Domain Prediction Method for Vortex-Induced Vibrations of a Flexible Pipe With Time-Varying Tension
OMAE 2018; V002T08A054https://doi.org/10.1115/OMAE2018-77451
Topics:
Pipes
,
Tension
,
Vortex-induced vibration
,
Fluid-dynamic forces
,
Drag (Fluid dynamics)
,
Flow (Dynamics)
,
Couplings
,
Cross-flow
,
Cylinders
,
Design
Phenomenological Modelling of Cylinder VIV With Contributions From Oscillatory Flows
OMAE 2018; V002T08A056https://doi.org/10.1115/OMAE2018-77689
Topics:
Cylinders
,
Flow (Dynamics)
,
Modeling
,
Vortex-induced vibration
,
Cross-flow
,
Vibration
,
Computational fluid dynamics
,
Fluids
,
Frequency response
,
Wakes
Steady and Unsteady Hydrodynamics of Different Shapes of Slender Drift Anchors With a Lattice Boltzmann Approach
OMAE 2018; V002T08A058https://doi.org/10.1115/OMAE2018-77837
Topics:
Hydrodynamics
,
Lattice Boltzmann methods
,
Shapes
,
Oceans
,
Computational fluid dynamics
,
Cross-flow
,
Design
,
Pipes
,
Seas
,
Water
Effect of Secondary Motion on Hydrodynamics of a Cylinder Oscillating in Still Fluid
OMAE 2018; V002T08A061https://doi.org/10.1115/OMAE2018-78443
Topics:
Cylinders
,
Fluids
,
Hydrodynamics
,
Oscillations
,
Vorticity
,
Circular cylinders
,
Computation
,
Computer simulation
,
Engineering simulation
,
Flow (Dynamics)
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