NASA Technical Reports Server (NTRS) 19910014918: User's Manual For Rocket Combustor Interactive Design (ROCCID) And Analysis Computer Program. Volume 2: Appendixes A-K - Info and Reading Options
By NASA Technical Reports Server (NTRS)
"NASA Technical Reports Server (NTRS) 19910014918: User's Manual For Rocket Combustor Interactive Design (ROCCID) And Analysis Computer Program. Volume 2: Appendixes A-K" and the language of the book is English.
“NASA Technical Reports Server (NTRS) 19910014918: User's Manual For Rocket Combustor Interactive Design (ROCCID) And Analysis Computer Program. Volume 2: Appendixes A-K” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19910014918: User's Manual For Rocket Combustor Interactive Design (ROCCID) And Analysis Computer Program. Volume 2: Appendixes A-K
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19910014918
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"NASA Technical Reports Server (NTRS) 19910014918: User's Manual For Rocket Combustor Interactive Design (ROCCID) And Analysis Computer Program. Volume 2: Appendixes A-K" Description:
The Internet Archive:
The appendices A-K to the user's manual for the rocket combustor interactive design (ROCCID) computer program are presented. This includes installation instructions, flow charts, subroutine model documentation, and sample output files. The ROCCID program, written in Fortran 77, provides a standardized methodology using state of the art codes and procedures for the analysis of a liquid rocket engine combustor's steady state combustion performance and combustion stability. The ROCCID is currently capable of analyzing mixed element injector patterns containing impinging like doublet or unlike triplet, showerhead, shear coaxial and swirl coaxial elements as long as only one element type exists in each injector core, baffle, or barrier zone. Real propellant properties of oxygen, hydrogen, methane, propane, and RP-1 are included in ROCCID. The properties of other propellants can be easily added. The analysis models in ROCCID can account for the influences of acoustic cavities, helmholtz resonators, and radial thrust chamber baffles on combustion stability. ROCCID also contains the logic to interactively create a combustor design which meets input performance and stability goals. A preliminary design results from the application of historical correlations to the input design requirements. The steady state performance and combustion stability of this design is evaluated using the analysis models, and ROCCID guides the user as to the design changes required to satisfy the user's performance and stability goals, including the design of stability aids. Output from ROCCID includes a formatted input file for the standardized JANNAF engine performance prediction procedure.
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