2012
DOI: 10.1088/1742-6596/341/1/012002
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High performance modeling of atmospheric re-entry vehicles

Abstract: Re-entry vehicles designed for space exploration are usually equipped with thermal protection systems made of ablative material. In order to properly model and predict the aerothermal environment of the vehicle, it is imperative to account for the gases produced by ablation processes. In the case of charring ablators, where an inner resin is pyrolyzed at a relatively low temperature, the composition of the gas expelled into the boundary layer is complex and may lead to thermal chemical reactions that cannot be… Show more

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Cited by 83 publications
(57 citation statements)
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“…The numerical simulations in this work are conducted using the Navier-Stokes computational fluid dynamics code LeMANS [19], developed at the University of Michigan. It is a general-purpose parallel three-dimensional code that solves the laminar NavierStokes equations, including chemical and thermal nonequilibrium effects on unstructured computational grids.…”
Section: B Numerical Methodsmentioning
confidence: 99%
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“…The numerical simulations in this work are conducted using the Navier-Stokes computational fluid dynamics code LeMANS [19], developed at the University of Michigan. It is a general-purpose parallel three-dimensional code that solves the laminar NavierStokes equations, including chemical and thermal nonequilibrium effects on unstructured computational grids.…”
Section: B Numerical Methodsmentioning
confidence: 99%
“…(19)] takes into account the nitrogen atom recombination on the wall due to surface catalysis along with the carbon nitridation reaction where the carbon from the surface reacts with the impinging nitrogen atoms. The EleyRideal recombination reaction is used to represent the process of carbon nitridation.…”
Section: Numerical Setupmentioning
confidence: 99%
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“…The hypersonic aerothermodynamic CFD code used in the present analysis is LeMANS, a finite-volume Navier-Stokes solver [18]. The code assumes that the rotational and translational energy modes of all species can be described by a single temperature T and that the vibrational energy mode and electronic energy mode of all species, as well as the free electron kinetic energy, can be described by another single temperature T ve .…”
Section: Lemans: Unstructured Three-dimensional Navier-stokes Somentioning
confidence: 99%
“…The numerical simulations are performed using the CFD code LeMANS, which was developed at the University of Michigan [6,7]. LeMANS solves the laminar Navier-Stokes equations on unstructured computational grids, including thermochemical nonequilibrium effects with second-order spatial accuracy.…”
Section: Governing Equationsmentioning
confidence: 99%