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Interaction of High-Speed Compressible Viscous Flow and Structure by Adaptive Finite Element Method  

Limtrakarn, Wiroj (Mechanical Engineering Department, Thammasat University)
Dechaumphai, Pramote (Mechanical Engineering Department, Chulalongkorn University)
Publication Information
Journal of Mechanical Science and Technology / v.18, no.10, 2004 , pp. 1837-1848 More about this Journal
Abstract
Interaction behaviors of high-speed compressible viscous flow and thermal-structural response of structure are presented. The compressible viscous laminar flow behavior based on the Navier-Stokes equations is predicted by using an adaptive cell-centered finite-element method. The energy equation and the quasi-static structural equations for aerodynamically heated structures are solved by applying the Galerkin finite-element method. The finite-element formulation and computational procedure are described. The performance of the combined method is evaluated by solving Mach 4 flow past a flat plate and comparing with the solution from the finite different method. To demonstrate their interaction, the high-speed flow, structural heat transfer, and deformation phenomena are studied by applying the present method to Mach 10 flow past a flat plate.
Keywords
Flow-Structure Interaction; Aerodynamic Heating Rate; Adaptive Mesh;
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Times Cited By KSCI : 4  (Citation Analysis)
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