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Integrated Rocket Simulation of Internal and External Flow Dynamics on the e-Science Environment : Integrated rocket simulation of internal and external flow dynamics in an e-Science environment

Cited 1 time in Web of Science Cited 0 time in Scopus
Authors

Ko, Soon-Heum; Han, Sangho; Kim, Jin-ho; Kim, Chongam; Moon, Jong Bae; Cho, Kum Won; Kim, Yoonhee

Issue Date
2009-11
Publisher
한국물리학회
Citation
Journal of the Korean Physical Society, Vol.55 No.5 PART 2, pp.2166-2171
Abstract
The internal and external flowfield variation of a launch vehicle has been simulated in an e-Science environment. To analyze the igniting process of a solid-rocket propellant, a fluid-structure interaction code has been developed using an ALE (arbitrary Lagrangian Eulerian) kinematical description and a staggered fluid-structure interaction algorithm. Also, unsteady motion of a detached rocket booster has been predicted by using an external flow analysis with an aerodynamic-dynamic coupled solver. A Korean e-Science environment designed for aerospace engineering, e-AIRS [15], supplies a user-friendly interface for such individual work and it can advance to an integrated rocket simulation of internal combustion and external flow variation by controlling the execution and data flow of two flow solvers. As a consequence, e-Science facilitates multi-disciplinary collaborative research, and makes individual work more convenient.
ISSN
0374-4884
URI
https://hdl.handle.net/10371/198822
DOI
https://doi.org/10.3938/jkps.55.2166
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