TY - GEN
T1 - Study on the combustion characteristics of LOX/kerosene pintle injector based on the state of liquid oxygen
AU - Zhao, Yaming
AU - Yu, Nanjia
N1 - Publisher Copyright:
Copyright ©2025 by the International Astronautical Federation (IAF). All rights reserved.
PY - 2025
Y1 - 2025
N2 - Pintle injector has strong application prospects in deep-throttling variable thrust rocket engines due to its excellent throttling and combustion performance. However, research on the combustion performance of cryogenic propellants in pintle injectors is still relatively scarce. This is particularly true when considering that under throttling conditions, the physical properties of cryogenic propellants are highly temperature-dependent, which can significantly alter the atomization and combustion performance of the pintle injector. This study presents a 50% throttling condition hot test on a liquid oxygen kerosene pintle engine, in which the liquid oxygen properties were altered by adjusting the pintle opening. The experimental results show that under the 50% throttling condition, the pintle injector can maintain combustion efficiency above 95%, with stable and rapid pressure buildup and no abnormal combustion phenomena such as instability. As the pintle opening increased, the amount of liquid oxygen vaporized inside the injector increased, the engine combustion efficiency decreased, and significant changes occurred in the engine's tail flame. Subsequently, a numerical simulation was performed to study the influence of partial vaporization of liquid oxygen inside the pintle injector on the spray and combustion process. This study explores the effect of the liquid oxygen injection state on the combustion performance of the pintle injector, providing scientific support for the application of cryogenic pintle injectors.
AB - Pintle injector has strong application prospects in deep-throttling variable thrust rocket engines due to its excellent throttling and combustion performance. However, research on the combustion performance of cryogenic propellants in pintle injectors is still relatively scarce. This is particularly true when considering that under throttling conditions, the physical properties of cryogenic propellants are highly temperature-dependent, which can significantly alter the atomization and combustion performance of the pintle injector. This study presents a 50% throttling condition hot test on a liquid oxygen kerosene pintle engine, in which the liquid oxygen properties were altered by adjusting the pintle opening. The experimental results show that under the 50% throttling condition, the pintle injector can maintain combustion efficiency above 95%, with stable and rapid pressure buildup and no abnormal combustion phenomena such as instability. As the pintle opening increased, the amount of liquid oxygen vaporized inside the injector increased, the engine combustion efficiency decreased, and significant changes occurred in the engine's tail flame. Subsequently, a numerical simulation was performed to study the influence of partial vaporization of liquid oxygen inside the pintle injector on the spray and combustion process. This study explores the effect of the liquid oxygen injection state on the combustion performance of the pintle injector, providing scientific support for the application of cryogenic pintle injectors.
KW - combustion performance
KW - liquid oxygen
KW - pintle injector
KW - throttling
UR - https://www.scopus.com/pages/publications/105036164658
U2 - 10.52202/083090-0149
DO - 10.52202/083090-0149
M3 - 会议稿件
AN - SCOPUS:105036164658
T3 - Proceedings of the International Astronautical Congress, IAC
SP - 1348
EP - 1354
BT - IAF Space Propulsion Symposium - Held at the 76th International Astronautical Congress, IAC 2025
PB - International Astronautical Federation, IAF
T2 - 2025 IAF Space Propulsion Symposium at the 76th International Astronautical Congress, IAC 2025
Y2 - 29 September 2025 through 3 October 2025
ER -