High Temperature Gas Effect on the Supersonic Flow With Application in Nozzles

Author:

Toufik Yahiaoui ,Toufik Zebbiche

Abstract

This work is to develop a new numerical computational program to determine the effect of using the gas of propulsion at high temperature on the calculation of the thermodynamic and geometric parameters, and application in supersonic nozzle divergent. The used selected gases are the H2, O2, N2, CO, CO2, H2O, NH3, CH4 and air. All parameters depend on the stagnation temperature, supersonic Mach number and the used gas itself. The specific heat at constant pressure change with the temperature and the selected gas. The gas is still considered perfect. It is calorically imperfect and thermally perfect below the threshold of the molecules dissociation. A calculation of the error between the parameters of different gases with air is done for purposes of comparison.

Reference28 articles.

1. Peterson, C. R. and Hill, P. G., "Mechanics and Thermodynamics of Propulsion", Addition-Wesley Publishing Company Inc., New York, USA, 1965.

2. Emanuel, G., "Gasdynamic: Theory and Application", AIAA Educational Series, New York, 1986.

3. Zebbiche, T. and Youbi, Z., "Supersonic Two-dimensional Minimum Length Nozzle Design at High Temperature. Application for Air", Chinese Journal of Aeronautics, Vol.20, No.1, pp.29-39, 2007.

4. Zebbiche, T., "Stagnation Temperature Effect on the Supersonic Axisymmetric Minimum Length Nozzle Design with Application for Air", Advances in Space Research, Vol.48, pp.1656-1675, 2011.

5. Anderson, J. D. Jr., "Fundamentals of Aerodynamics", Second Edition, McGraw-Hill Book Company, New York, USA, 1988.

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