DocumentCode
2029916
Title
Hydrodynamics Prediction of High Speed Sea Lift (HSSL) Ships
Author
Gorski, Joseph ; Miller, Ronald ; Carrica, Pablo ; Kandasamy, Mani ; Xing, Tao ; Stern, Fred
Author_Institution
Div. of Carderock, US Naval Surface Warfare Center, West Bethesda, MD
fYear
2006
fDate
38869
Firstpage
135
Lastpage
140
Abstract
High speed sea lift (HSSL) is an important area of interest for the US Navy. Computational tools are needed to predict the hydrodynamics of these multihull configurations for their proper design and analysis in many areas including resistance and powering, motions and habitability, loads in service and maneuverability. To address these issues requires a hierarchy of computational and experimental capabilities. Described here are efforts underway to use unsteady Reynolds averaged Navier-Stokes (URANS) solvers to answer some of these needs. Specifically, computations are demonstrated with CFDSHIP-Iowa to predict relevant HSSL catamaran and trimaran configurations under a variety of operating conditions in both calm water and with waves. Many of these predictions, particularly those representing behavior in various sea states, are very computationally intensive and thus require high performance computing resources. The predictions demonstrated here are paving the way for a computational capability to aid in the design for a new generation of naval ships
Keywords
Navier-Stokes equations; hydrodynamics; naval engineering computing; ships; CFDSHIP-Iowa; HSSL catamaran; high speed sea lift ships; hydrodynamics prediction; multihull configurations; naval ship design; trimaran; unsteady Reynolds averaged Navier-Stokes solvers; High performance computing; Hydrodynamics; Iterative methods; Marine vehicles; Military computing; Propulsion; Sea surface; Solid modeling; Surface waves; Water jet cutting;
fLanguage
English
Publisher
ieee
Conference_Titel
HPCMP Users Group Conference, 2006
Conference_Location
Denver, CO
Print_ISBN
0-7695-2797-3
Type
conf
DOI
10.1109/HPCMP-UGC.2006.38
Filename
4134045
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