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A Virtual Test Facility for Simulating Detonation-Induced Fracture of Thin Flexible Shells

Authors :
Alexandrov, Vassil N.
van Albada, Geert Dick
Sloot, Peter M. A.
Dongarra, Jack
Deiterding, Ralf
Cirak, Fehmi
Mauch, Sean P.
Meiron, Daniel I.
Alexandrov, Vassil N.
van Albada, Geert Dick
Sloot, Peter M. A.
Dongarra, Jack
Deiterding, Ralf
Cirak, Fehmi
Mauch, Sean P.
Meiron, Daniel I.
Publication Year :
2006

Abstract

The fluid-structure interaction simulation of detonation- and shock-wave-loaded fracturing thin-walled structures requires numerical methods that can cope with large deformations as well as topology changes. We present a robust level-set-based approach that integrates a Lagrangian thin shell finite element solver with fracture and fragmentation capabilities with an Eulerian Cartesian detonation solver with optional dynamic mesh adaptation. As an application example, the rupture of a thin aluminum tube due to the passage of an ethylene-oxygen detonation wave is presented.

Details

Database :
OAIster
Notes :
application/pdf, A Virtual Test Facility for Simulating Detonation-Induced Fracture of Thin Flexible Shells, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1134523383
Document Type :
Electronic Resource