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Numerical study of the effect of rotation on the behavior of the conjugate heat and mass transfer on the surface of a spherically blunted cone exposed to a hypersonic flow at an angle of attack with ablation from the surface K. N. Efimov, V. A. Ovchinnikov, A. S. Yakimov

By: Efimov, Konstantin NContributor(s): Ovchinnikov, Vyacheslav A | Yakimov, Anatoliy SMaterial type: ArticleArticleSubject(s): математическое моделирование | энтальпия | абляция | теплозащитные материалы | пограничный слой | теплообмен | массообменGenre/Form: статьи в журналах Online resources: Click here to access online In: High temperature Vol. 56, № 2. P. 239-246Abstract: The processes of heating a body in a high-enthalpy spatial flow with allowance for body rotation around its longitudinal axis and ablation of the thermal protection material are studied by means of mathematical simulation. The obtained solution of the problem in conjugate formulation allowed us to take into account the effect of nonisothermic characteristics of the shell on the heat and mass transfer in the boundary layer.
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The processes of heating a body in a high-enthalpy spatial flow with allowance for body rotation around its longitudinal axis and ablation of the thermal protection material are studied by means of mathematical simulation. The obtained solution of the problem in conjugate formulation allowed us to take into account the effect of nonisothermic characteristics of the shell on the heat and mass transfer in the boundary layer.

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