Test data from NASA Lewis' Effect of Thrust Per Element on Combustion Stability Characteristics of Hydrogen-Oxygen Rocket Engines test program are used to validate two recently released stability analysis tools. The first tool is a design methodology called ROCCID (ROCket Combustor Interactive Design). ROCCID is an interactive design and analysis methodology that uses existing performance and combustion stability analysis codes. The second tool is HICCIP (High frequency Injection Coupled Combustion Instability Program). HICCIP is a recently developed combustion stability analysis model. Using a matrix of models, results from analytic comparisons with 20 K LOX/H2 experimental data are presented
NASA is developing the Space Launch System (SLS) for crewed exploration missions beyond low Earth or...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...
During the past three decades, an enormous amount of resources were expended in the design and devel...
The ROCket Combustor Interactive Design (ROCCID) methodology is an interactive computer program that...
The ROCket Combustor Interactive Design (ROCCID) Methodology is a newly developed, interactive compu...
The combustion stability characteristics of a combustor consisting of a single shear element and a c...
This paper summarises work conducted within an ESA TDE project addressing the development of predict...
In 40K methane/LOX 5 KHz engine tests, (first transverse mode) combustion instabilities observed by ...
Coaxial injector thrust effects on combustion stability of hydrogen-oxygen rocket engin
The J-2X engine, a liquid oxygen/liquid hydrogen propellant rocket engine available for future use o...
The liquid rocket engine stability prediction software (LCI) predicts combustion stability of system...
Preliminary identification and evaluation of promising liquid oxygen/ hydrocarbon (LO2/HC) rocket en...
Injector behavior is of utmost importance for the performance and stability of liquid rocket engines...
Single element injectors and two fuels were tested with the aim of photographically characterizing o...
NASA is developing the Space Launch System (SLS) for crewed exploration missions beyond low Earth or...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...
During the past three decades, an enormous amount of resources were expended in the design and devel...
The ROCket Combustor Interactive Design (ROCCID) methodology is an interactive computer program that...
The ROCket Combustor Interactive Design (ROCCID) Methodology is a newly developed, interactive compu...
The combustion stability characteristics of a combustor consisting of a single shear element and a c...
This paper summarises work conducted within an ESA TDE project addressing the development of predict...
In 40K methane/LOX 5 KHz engine tests, (first transverse mode) combustion instabilities observed by ...
Coaxial injector thrust effects on combustion stability of hydrogen-oxygen rocket engin
The J-2X engine, a liquid oxygen/liquid hydrogen propellant rocket engine available for future use o...
The liquid rocket engine stability prediction software (LCI) predicts combustion stability of system...
Preliminary identification and evaluation of promising liquid oxygen/ hydrocarbon (LO2/HC) rocket en...
Injector behavior is of utmost importance for the performance and stability of liquid rocket engines...
Single element injectors and two fuels were tested with the aim of photographically characterizing o...
NASA is developing the Space Launch System (SLS) for crewed exploration missions beyond low Earth or...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...
Liquid rocket engines using oxygen and methane propellants are being considered by the National Aero...