利用11D58M型氧烃发动机进行可行性研究,为研制高性能氧冷却多功能无气体发生器火箭发动机奠定基础

B. Sokolov, N. Tupitsyn
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引用次数: 1

摘要

本文介绍了RSC Energia的工程研究和研发成果,分析和证明了使用量产的8.5吨推力的氧烃发动机11D58M的可行性,并以此为基础开发了具有氧冷却和5吨推力的高性能多功能火箭发动机,这是最优的上级(美国),体现了一个不包括燃气发生器的系统。发动机的多功能意味着它包含了额外的单元来支持一些对美国很重要的功能,例如在零重力飞行后从美国油箱向发动机提供推进剂,自动控制发动机自动设备以支持其点火,关闭,燃烧时的调整和非标称操作时的紧急保护,以及产生扭矩以控制美国姿态并在滑行期间稳定它,等等。用创新的氧气冷却取代传统的高沸点碳氢化合物燃料的发动机腔冷却,可以摆脱内部薄膜冷却回路,消除随之而来的燃料损失,同时使用腔室冷却回路中气化的氧气来驱动涡轮泵组件,可以设计出没有气体发生器的发动机。关键词:多功能火箭发动机,氧气冷却,无气体发生器设计,上级。
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A study into the feasibility of using the oxygen-hydrocarbon engine 11D58M as a basis for development of a high-performance multifunctional gas-generatorless rocket engine with oxygen cooling
The paper presents results of engineering studies and research and development efforts at RSC Energia to analyze and prove the feasibility of using the mass-produced oxygen-hydrocarbon engine 11D58M with 8.5 ton-force thrust as a basis for development of a high-performance multifunctional rocket engine with oxygen cooling and 5 ton-force thrust, which is optimal for upper stages (US), embodying a system that does not include a gas generator. The multi-functionality of the engine implies including in it additional units supporting some functions that are important for US, such as feeding propellant from US tanks to the engine after flying in zero gravity, autonomous control of the engine automatic equipment to support its firing, shutdown, adjustments during burn and emergency protection in case of off-nominal operation, as well as generating torques for controlling the US attitude and stabilizing it during coasting, etc. Replacing conventional engine chamber cooling that uses high-boiling hydrocarbon fuel with the innovative oxygen cooling makes it possible to get rid of the internal film cooling circuits and eliminate their attendant losses of fuel, while the use of the oxygen gasified in the cooling circuit of the chamber to drive the turbo pump assembly permits to design an engine that does not have a gas generator. Key words: Multifunctional rocket engine, oxygen cooling, gas-generatorless design, upper stage.
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