Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields
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Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields

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Published by Aerospace Engineering Dept., Texas A&M University, National Aeronautics and Space Administration in College Station, TX, [Washington, D.C .
Written in English

Subjects:

  • Computer programs.,
  • Shock waves.

Book details:

Edition Notes

StatementLeland A. Carlson.
SeriesNASA contractor report -- NASA-CR-188195., TAMRF Report -- no. 6382-91-01-(III), NASA contractor report -- NASA CR-188195., TAMRF report -- no. 6382-91-01-(III)
ContributionsUnited States. National Aeronautics and Space Administration.
The Physical Object
FormatMicroform
Pagination1 v.
ID Numbers
Open LibraryOL15384288M

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Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields. By Leland A. Carlson. Abstract. The continued development and improvement of the viscous shock layer (VSL) nonequilibrium chemistry blunt body engineering code, the incorporation in a coupled manner of radiation models into the VSL code, and the initial Author: Leland A. Carlson. The primary tasks performed are: (1) the development of a second order local thermodynamic nonequilibrium (LTNE) model for atoms; (2) the continued development of vibrational nonequilibrium models; and (3) the development of a new multicomponent diffusion : Leland A. Carlson. Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields. By Leland A. Carlson. Abstract. This method can be used for rapid engineering modeling of nonequilibrium re-entry flowfields over a wide range of conditions. (2) Another significant accomplishment was the development of an air radiation model that included Author: Leland A. Carlson. Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields period were the development of a single and multi-vibrational temperature preferential vibration-dissociation coupling model, the development of a normal shock nonequilibrium radiation-gasdynamic coupling model based upon the blunt body model, and the Author: Leland A. Carlson.

Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields. to June have been the development and evaluation of various electron and electron-electronic energy equation models, the continued development of improved nonequilibrium radiation models for molecules and atoms, and the continued development and Author: Leland A. Carlson. NONEQUILIBRIUM RADIATION AND CHEMISTRY MODELS FOR AEROCAPTURE VEHICLE FLOWFIELDS Semiannual Progress Report February -- June TAMRF Report No. July NASA Grant No. NAG-I Leland A. Carlson Professor of Aerospace Engineering Texas A&M University College Station, TX Equilibrium radiative heating tables for aerobraking in the Martian atmosphere. and chemical nonequilibrium on the aerothermodynamic environment over a Mars aerocapture vehicle . The Impact of Flowfield-Radiation Coupling on Aeroheating for Titan Aerocapture Article (PDF Available) in Journal of Thermophysics and Heat Transfer 19(1) January with Reads.

Nonequilibrium Phenomena in Polyatomic Gases: Volume 2: Cross Sections, Scattering, and Rarefied Gases (International Series of Monographs on Chemistry) [McCourt, Frederick R. W., Beenakker, Jan J. M., Köhler, Walter E., Kuscer, Ivan] on *FREE* shipping on qualifying offers. Nonequilibrium Phenomena in Polyatomic Gases: Volume 2: Cross Sections, Scattering, and Authors: Frederick R. W. McCourt, Walter E. Köhler, Jan J. M. Beenakker. Get this from a library! Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields: semiannual progress report, June December [Leland A Carlson; United States. National Aeronautics and Space Administration.]. Shock Radiation Measurements for Mars Aerocapture Radiative Heating Analysis Article in Journal of Thermophysics and Heat Transfer 23(2) April with 20 Reads How we measure 'reads'. Get this from a library! Nonequilibrium radiation and chemistry models for aerocapture vehicle flowfields. Volume I: semiannual progress report, July - December [Leland A Carlson; United States. National Aeronautics and Space Administration.].