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pro vyhledávání: '"Paulo H. M. Leite"'
Autor:
Paulo H. M. Leite, Wilson F. N. Santos
Publikováno v:
Journal of Thermophysics and Heat Transfer. 33:749-761
This work deals with a numerical study on backward-facing steps situated in a nonreacting low-density hypersonic flow. The work is motivated by the interest in investigating the impact on the aerod...
Autor:
Wilson F. N. Santos, Paulo H. M. Leite
Publikováno v:
Journal of Fluid Mechanics. 763:460-499
This work is a computational study of a rarefied non-reacting hypersonic flow past a forward-facing step at zero-degree angle of attack in thermal non-equilibrium. Effects on the flow field structure and on the aerodynamic surface quantities due to c
Autor:
Wilson F. N. Santos, Paulo H. M. Leite
Publikováno v:
Progress in Flight Physics – Volume 7.
This work describes a computational analysis of a hypersonic flow over a combined gap/step configuration at zero degree angle of attack, in chemical equilibrium and thermal nonequilibrium. Effects on the flowfield structure due to changes on the step
Autor:
Paulo H. M. Leite, Wilson F. N. Santos
Publikováno v:
AIP Conference Proceedings.
A computational analysis of a hypersonic flow over a combined gap/step configuration at zero degree angle of attack, in chemical equilibrium and thermal non-equilibrium is presented in this work. Effects on pressure and heating loads due to changes o
Autor:
Wilson F. N. Santos, Paulo H. M. Leite
Publikováno v:
44th AIAA Thermophysics Conference.
This paper describes a numerical study on backward-facing steps situated in a rarefied hypersonic flow by employing the Direct Simulation Monte Carlo (DSMC) method. The work is motivated by the interest in investigating the step-height effect on the
Autor:
Paulo H. M. Leite, Wilson F. N. Santos
Publikováno v:
42nd AIAA Thermophysics Conference.
The present work performs a computational study on rarefled hypersonic ∞ow past a forward-facing step at zero-degree angle of attack in chemical equilibrium and thermal non-equilibrium. Efiects on the aerodynamic surface quantities due to changes o