23 citations · 142 across the 17 of their papers we have counts for
17 papers
The Numerical Simulation of Ship Waves using Cartesian Grid Methods
Mark Sussman, Douglas G. Dommermuth
Two different cartesian-grid methods are used to simulate the flow around the DDG 5415. The first technique uses a "coupled level-set and volume-of-fluid" (CLS) technique to model…
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…
Numerical Simulation of Wakes in a Weakly Stratified Fluid
James W. Rottman, Douglas G. Dommermuth, George E. Innis +2
This paper describes some preliminary numerical studies using large eddy simulation of full-scale submarine wakes. Submarine wakes are a combination of the wake generated by a smoo…
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.…
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…
An Integrated Experimental and Computational Investigation into the Dynamic Loads and Free-surface Wave-Field Perturbations Induced by Head-Sea Regular Waves on a 1/8.25 Scale-Model of the R/V ATHENA
Toby Ratcliffe, Lisa Minnick, Thomas T. O'Shea +3
A 1/8.25 scale-model of the U.S. Navy Research Vessel ATHENA was tested in regular head-sea waves to obtain data for validation of computational fluid dynamics (CFD) predictive too…