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portada Validation of Supersonic Film Cooling Modeling for Liquid Rocket Engine Applications
Type
Physical Book
Publisher
Language
Inglés
Pages
58
Format
Paperback
Dimensions
24.6 x 18.9 x 0.3 cm
Weight
0.12 kg.
ISBN13
9781289142391

Validation of Supersonic Film Cooling Modeling for Liquid Rocket Engine Applications

Nasa Technical Reports Server (Ntrs) (Author) · Christopher I. Morris (Author) · Joseph H. Ruf (Author) · Bibliogov · Paperback

Validation of Supersonic Film Cooling Modeling for Liquid Rocket Engine Applications - Morris, Christopher I. ; Ruf, Joseph H. ; Nasa Technical Reports Server (Ntrs)

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Origin: U.S.A. (Import costs included in the price)
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Synopsis "Validation of Supersonic Film Cooling Modeling for Liquid Rocket Engine Applications"

Topics include: upper stage engine key requirements and design drivers; Calspan "stage 1" results, He slot injection into hypersonic flow (air); test articles for shock generator diagram, slot injector details, and instrumentation positions; test conditions; modeling approach; 2-d grid used for film cooling simulations of test article; heat flux profiles from 2-d flat plate simulations (run #4); heat flux profiles from 2-d backward facing step simulations (run #43); isometric sketch of single coolant nozzle, and x-z grid of half-nozzle domain; comparison of 2-d and 3-d simulations of coolant nozzles (run #45); flowfield properties along coolant nozzle centerline (run #45); comparison of 3-d CFD nozzle flow calculations with experimental data; nozzle exit plane reduced to linear profile for use in 2-d film-cooling simulations (run #45); synthetic Schlieren image of coolant injection region (run #45); axial velocity profiles from 2-d film-cooling simulation (run #45); coolant mass fraction profiles from 2-d film-cooling simulation (run #45); heat flux profiles from 2-d film cooling simulations (run #45); heat flux profiles from 2-d film cooling simulations (runs #47, #45, and #47); 3-d grid used for film cooling simulations of test article; heat flux contours from 3-d film-cooling simulation (run #45); and heat flux profiles from 3-d and 2-d film cooling simulations (runs #44, #46, and #47).

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