DocumentCode
2857971
Title
Modeling of Mine Countermeasure Dart Dispense
Author
Prybyla, Gary ; Neaves, Michael ; Baltar, James ; Losser, Kevin ; Morrell, Morris ; Dietz, William
Author_Institution
Naval Surface Warfare Center, Indian Head
fYear
2007
fDate
18-21 June 2007
Firstpage
446
Lastpage
448
Abstract
Mine countermeasure systems are currently under development to defeat beach- and surf-zone mines by dispensing small darts from a larger primary projectile body (Hydra-7, MODS, and CMCO). These programs currently lack modeling and simulation techniques that incorporate all of the complexities of the aerodynamics of the dart dispense. OVERFLOW software will be used to perform computational fluid dynamics (CFD) simulations, using overset structured grids (created with OVERGRID), of representative delivery vehicles dispensing numerous (up to 381) mine countermeasure darts. These darts, approximately 5 to 6 inches in length, are designed to disable mines in the beach and surf zones after being dispensed in a uniform pattern over a given area. OVERFLOW will solve the equations of motion for each moving dart body and thus provide a time-accurate prediction of the dispense event. The results of 8 OVERFLOW dart dispense simulations of Venom Penetrator darts, each with a different Mach number, spin rate, and number of darts, will be presented and discussed.
Keywords
Mach number; aerodynamics; computational fluid dynamics; military computing; naval engineering computing; Mach number; OVERFLOW software; beach-zone mines; computational fluid dynamics simulations; dart dispense aerodynamics; mine countermeasure systems; motion equations; overset structured grids; surf-zone mines; venom penetrator darts; Aerodynamics; Cities and towns; Computational fluid dynamics; Computational modeling; Discrete event simulation; High performance computing; Military computing; Predictive models; Software performance; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
DoD High Performance Computing Modernization Program Users Group Conference, 2007
Conference_Location
Pittsburgh, PA
Print_ISBN
978-0-7695-3088-5
Type
conf
DOI
10.1109/HPCMP-UGC.2007.50
Filename
4438025
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