中国空间科学技术 ›› 2026, Vol. 46 ›› Issue (2): 99-107.doi: 10.16708/j.cnki.1000-758X.2026.0028

• 载人月球探测专刊 • 上一篇    下一篇

载人月球探测登月舱推进技术

顾帅华1,2,王建海1,*,胡瑜洲1,朱银娟1   

  1. 1.上海空间推进研究所,上海201112
    2.空间高效能推进技术及应用全国重点实验室,北京101416
  • 收稿日期:2025-10-24 修回日期:2025-12-23 录用日期:2026-01-07 发布日期:2026-03-20 出版日期:2026-03-31

Propulsion technology of the lunar module for manned lunar exploration

GU Shuaihua1,2,WANG Jianhai1,*,HU Yuzhou1,ZHU Yinjuan1   

  1. 1.Shanghai Institute of Space Propulsion,Shanghai 201112,China
    2.State Key Laboratory of Advanced Space Propulsion,Beijing 101416,China
  • Received:2025-10-24 Revision received:2025-12-23 Accepted:2026-01-07 Online:2026-03-20 Published:2026-03-31

摘要: 针对载人月球探测飞行器高性能高可靠推进系统方案设计、轻质高承载大容积贮箱以及连续变推力发动机为代表的各项关键技术问题,提出了一系列解决上述技术问题的关注点和系统控制措施。设计上通过系统大流量下氧燃减压阀差异化调试和小流量下落压补气确保贮箱压力及压差,通过系统上流阻配平和单机热标确保四台变推力发动机推力一致性。将上述方法通过单机试验和系统级试验进行技术验证。结果表明,提出的解决措施能够降低或消除各项关键技术所面临的风险,现阶段已解决大小流量下共底贮箱压差稳定性控制和四台变推力发动机推力一致性控制的技术难题。贮箱共底压差能够小幅度控制在0~0.3MPa范围内,四台变推力发动机推力偏差控制在100N范围内。研究意味着中国载人月球探测已突破了推进系统各关键技术难题,能够可靠为载人月球飞行器提供动力,并为后续飞行器的设计提供了新的思路。

关键词: 载人月球探测, 关键技术, 技术验证, 压差稳定性, 推力一致性

Abstract: A series of key technical issues, such as the design of high-performance and highly reliable propulsion systems for manned lunar exploration spacecraft, lightweight high-load-bearing large-volume tanks, and throttleable engine, have been addressed. A number of concerns and systematic control measures have been proposed to solve these technical problems. The pressure and pressure difference of the storage tank are ensured by differentiating the oxygen-fuel pressure reducing valve under large system flow and by compensating for pressure drop under small flow. The thrust consistency of the four variable-thrust engines is guaranteed by balancing the upstream flow resistance of the system and the thermal calibration of individual units. The above-mentioned methods were verified through technical verification by conducting single-machine tests and system-level tests. The results show that the proposed solutions in this paper can reduce or eliminate the risks faced by various key technologies. The technical problems of pressure difference stability control of common bottom tanks under large and small flow rates and thrust consistency control of four variable-thrust engines have been solved. The pressure difference of the common bottom tank can be controlled within a small range of 0 to 0.3MPa, and the thrust deviation of the four variable-thrust engines is controlled within 100N. These researches indicate that manned lunar exploration has overcome the key technical challenges of the propulsion system, and can reliably provide power for manned lunar spacecraft, as well as offer new ideas for the design of subsequent spacecraft.

Key words: manned lunar exploration, key technologies, technical verification, pressure difference stability, thrust consistency