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NASA NTRS ยท 19920022003

Computer program to solve two-dimensional shock-wave interference problems with an equilibrium chemically reacting air model

Abstract

The computer program EASI, an acronym for Equilibrium Air Shock Interference, was developed to calculate the inviscid flowfield, the maximum surface pressure, and the maximum heat flux produced by six shock wave interference patterns on a 2-D, cylindrical configuration. Thermodynamic properties of the inviscid flowfield are determined using either an 11-specie, 7-reaction equilibrium chemically reacting air model or a calorically perfect air model. The inviscid flowfield is solved using the integral form of the conservation equations. Surface heating calculations at the impingement point for the equilibrium chemically reacting air model use variable transport properties and specific heat. However, for the calorically perfect air model, heating rate calculations use a constant Prandtl number. Sample calculations of the six shock wave interference patterns, a listing of the computer program, and flowcharts of the programming logic are included.

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BibTeXRIS

Glass, Christopher E.. 1990-08-01. Computer program to solve two-dimensional shock-wave interference problems with an equilibrium chemically reacting air model. https://ntrs.nasa.gov/citations/19920022003

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