Advanced thrust chamber technology for in-space propulsion systemTwo new concepts, the afterburning technique and the spray optimization method for the purpose of upgrading the combustion efficiency and C efficiency, are examined to assess the technical merits and hurdles that need to be resolved. Details of combustion and aerodynamic processes of monomethylhydrazine and nitrogen tetroxides in a toroidal shaped combustion chamber of a variable thrust engine, devised with a wall impingement cooling system and the secondary injection of an oxidizer from the chamber wall for an afterburning, are investigated for the selected secondary injection conditions. With an appropriate injection condition, the combustion efficiency was found to be almost 23 percent higher than that of an engine without afterburning.
Document ID
19920030532
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Chiu, H. H. (National Cheng Kung Univ. Tainan, Taiwan)
Jiang, T. L. (National Cheng Kung University Tainan, Republic of China, United States)
Gross, K. W. (NASA Marshall Space Flight Center Huntsville, AL, United States)