A Hybrid Real/Ideal Gas Mixture Computational Framework to Capture Wave Propagation in Liquid Rocket Combustion Chamber Conditions

D’Alessandro, Simone and Pizzarelli, Marco and Nasuti, Francesco (2021) A Hybrid Real/Ideal Gas Mixture Computational Framework to Capture Wave Propagation in Liquid Rocket Combustion Chamber Conditions. Aerospace, 8 (9). p. 250. ISSN 2226-4310

[thumbnail of aerospace-08-00250-v2.pdf] Text
aerospace-08-00250-v2.pdf - Published Version

Download (1MB)

Abstract

The present work focuses on the development of new mathematical and numerical tools to deal with wave propagation problems in a realistic liquid rocket chamber environment. A simplified real fluid equation of state is here derived, starting from the literature. An approximate Riemann solver is then specifically derived for the selected conservation laws and primitive variables. Both the new equation of state and the new Riemann solver are embedded into an in-house one-dimensional CFD solver. The verification and validation of the new code against wave propagation problems are then performed, showing good behavior. Although such problems might be of interest for different applications, the present study is specifically oriented to the low order modeling of high-frequency combustion instability in liquid-propellant rocket engines.

Item Type: Article
Subjects: Article Archives > Engineering
Depositing User: Unnamed user with email support@articlearchives.org
Date Deposited: 12 Jan 2023 09:35
Last Modified: 20 Mar 2024 04:46
URI: http://archive.paparesearch.co.in/id/eprint/27

Actions (login required)

View Item
View Item