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Fluid-Structure Interaction Simulation of an Inflatable Aerodynamic Tension-Cone Decelerator

Richard Michael Jack Kramer, Fehmi Cirak, Carlos Pantano

Year
2010
Citations
3

Abstract

Inflatable aerodynamic decelerators have potential advantages for planetary re-entry in robotic and human exploration missions. In this paper, we focus on an inflatable tension cone design that has potential advantages over other geometries. A computational fluid-structure interaction model of a tension cone is employed to investigate the behavior of the inflatable aeroshell at supersonic speeds for conditions matching recent experimental results. A parametric study is carried out to investigate the deflections of the tension cone as a function of inflation pressure of the torus at a Mach of 2.5. Comparison of the behavior of the structure, amplitude of deformations, and determined loads are reported. © 2010 by the American Institute of Aeronautics and Astronautics, Inc.

Keywords

InflatableAerodynamicsTension (geology)Fluid–structure interactionAerospace engineeringSurface tensionCone (formal languages)MechanicsComputer sciencePhysics

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