TY - JOUR
T1 - Parametric model and design of full flow staged combustion cycle engine system for (II) parameterization design
AU - Jin, Ping
AU - Li, Mao
AU - Wang, Xiao Wei
AU - Li, Jia Wen
AU - Cai, Guo Biao
PY - 2011/2
Y1 - 2011/2
N2 - Based on the full flow staged combustion (FFSC) cycle engine balance model, three parameters were selected for the engine system design, such as hydrogen transpiration cooling mass flow rate, combustion chamber pressure and combustion chamber mixture ratio. These results show that, when the thrust and nozzle expansion ratio are kept constant: (1) with the increase of hydrogen transpiration cooling mass flow rate, the fuel pump lift ascends rapidly and the oxidizer pump lift falls down; (2) with the increase of combustion chamber pressure, the pump lift ascends linearly before combustion chamber pressure at 20 MPa and rapidly after 20 MPa, so 20 MPa is recommended for combustion chamber pressure; (3) with the increase of combustion chamber mixture ratio, the fuel pump lift ascends linearly, the oxidizer pump lift reduces rapidly and then slowly, so seven is recommended for combustion chamber mixture ratio. The effects of these design parameters on engine system parameters offer a reasonable range for engine system design.
AB - Based on the full flow staged combustion (FFSC) cycle engine balance model, three parameters were selected for the engine system design, such as hydrogen transpiration cooling mass flow rate, combustion chamber pressure and combustion chamber mixture ratio. These results show that, when the thrust and nozzle expansion ratio are kept constant: (1) with the increase of hydrogen transpiration cooling mass flow rate, the fuel pump lift ascends rapidly and the oxidizer pump lift falls down; (2) with the increase of combustion chamber pressure, the pump lift ascends linearly before combustion chamber pressure at 20 MPa and rapidly after 20 MPa, so 20 MPa is recommended for combustion chamber pressure; (3) with the increase of combustion chamber mixture ratio, the fuel pump lift ascends linearly, the oxidizer pump lift reduces rapidly and then slowly, so seven is recommended for combustion chamber mixture ratio. The effects of these design parameters on engine system parameters offer a reasonable range for engine system design.
KW - Combustion chamber mixture ratio
KW - Combustion chamber pressure
KW - Full flow staged combustion cycle
KW - Hydrogen transpiration cooling mass flow rate
KW - System parameters design
UR - https://www.scopus.com/pages/publications/79953742634
M3 - 文章
AN - SCOPUS:79953742634
SN - 1000-8055
VL - 26
SP - 435
EP - 441
JO - Hangkong Dongli Xuebao/Journal of Aerospace Power
JF - Hangkong Dongli Xuebao/Journal of Aerospace Power
IS - 2
ER -