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NASA NTRS · 19850013263

Surface-slip equations for multicomponent nonequilibrium air flow

Abstract

Equations are presented for the surface-slip (or jump) values of species concentration, pressure, velocity, and temperature in the low-Reynolds number, high-altitude flight regime of a space vehicle. The equations are obtained from closed form solutions of the mass, momentum, and energy flux equations using the Chapman-Enskog velocity distribution function. This function represents a solution of the Boltzmann equation in the Navier-Stokes approximation. The analysis, obtained for nonequilibrium multicomponent air flow, includes the finite-rate surface catalytic recombination and changes in the internal energy during reflection from the surface. Expressions for the various slip quantities were obtained in a form which can be employed in flowfield computations. A consistent set of equations is provided for multicomponent, binary, and single species mixtures. Expression is also provided for the finite-rate, species-concentration boundary condition for a multicomponent mixture in absence of slip.

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BibTeXRIS

Gupta, R. N., Scott, C. D., Moss, J. N.. 1985-03-01. Surface-slip equations for multicomponent nonequilibrium air flow. https://ntrs.nasa.gov/citations/19850013263

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