most citedA Numerical Formulation for Simulating Free-Surface Hydrodynamics

23 citations · 94 across the 8 of their papers we have counts for

collaborators

8 papers

physics.flu-dyn201423 cited

A Numerical Formulation for Simulating Free-Surface Hydrodynamics

Thomas T. O'Shea, Kyle A. Brucker, Douglas G. Dommermuth +1

Cartesian-grid methods in combination with immersed-body and volume-of-fluid methods are ideally suited for simulating breaking waves around ships. A surface panelization of the sh…

physics.flu-dyn201418 cited

The Numerical Simulation of Ship Waves Using Cartesian Grid Methods with Adaptive Mesh Refinement

Douglas G. Dommermuth, Mark Sussman, Robert F. Beck +4

Cartesian-grid methods with Adaptive Mesh Refinement (AMR) are ideally suited for simulating the breaking of waves, the formation of spray, and the entrainment of air around ships.…

physics.flu-dyn201420 cited

The Numerical Simulation of Ship Waves Using Cartesian-Grid and Volume-of-Fluid Methods

Douglas G. Dommermuth, Thomas T. O'Shea, Donald C. Wyatt +5

Cartesian-grid methods in combination with immersed-body and volume-of-fluid methods are ideally suited for simulating breaking waves around ships. A surface panelization of the sh…

physics.flu-dyn2014

A Detailed Assessment of Numerical Flow Analysis (NFA) to Predict the Hydrodynamics of a Deep-V Planing Hull

Thomas C. Fu, Thomas T. O'Shea, Carolyn Q. Judge +3

Over the past few years much progress has been made in Computational Fluid Dynamics (CFD) in its ability to accurately simulate the hydrodynamics associated with a deep-V monohull…

physics.flu-dyn20144 cited

A Comparison of Model-Scale Experimental Measurements and Computational Predictions for a Large Transom-Stern Wave

David A. Drazen, Anne M. Fullerton, Thomas C. Fu +8

The flow field generated by a transom stern hull form is a complex, broad-banded, three-dimensional system marked by a large breaking wave. This unsteady multiphase turbulent flow…

physics.flu-dyn201412 cited

A Comparison of Experimental Measurements and Computational Predictions of a Deep-V Planing Hull

Thomas C. Fu, Toby Ratcliffe, Thomas T. O'Shea +3

In order to support development of computational fluid dynamics codes for high-speed, small-craft applications, laboratory experiments were performed on a representative of Deep-V…