Effects of entry conditions on cracked kerosene-fueled supersonic combustor performance


Autoria(s): 范学军; 俞刚; 李建国; 岳连捷; 张新宇; Sung CJ
Data(s)

2007

Resumo

Supersonic combustion of thermally cracked kerosene was experimentally investigated in two model supersonic combustors with different entry cross-section areas. Effects of entry static pressure, entry Mach number, combustor entry geometry, and injection scheme on combustor performance were systematically investigated and discussed based on the measured static pressure distribution and specific thrust increment due to combustion. In addition, the methodology for characterizing flow rate and composition of cracked kerosene was detailed. Using a pulsed Schlieren system, the interaction of supercritical and cracked kerosene jet plumes with a Mach 2.5 crossflow was also visualized at different injection temperatures. The present experimental results suggest that the use of a higher combustor entry Mach number as well as a larger combustor duct height would suppress the boundary layer separation near the combustor entrance and avoid the problem of inlet un- start.

Identificador

http://dspace.imech.ac.cn/handle/311007/33917

http://www.irgrid.ac.cn/handle/1471x/2807

Idioma(s)

英语

Fonte

Combustion Science and Technology.2007,179(10):2199-2217

Palavras-Chave #Entry Conditions #Kerosene #Supersonic Combustion #Thermal Cracking #Model Combustor #Propulsion #Injection
Tipo

期刊论文