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小推力推进系统启动过程仿真分析 被引量:2

Simulation Analysis on Start Process of Low-thrust Propulsion System
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摘要 针对多台推力器启动耦合对响应特性的不利影响,采用AMESim仿真软件建立小推力推进系统仿真模型,仿真分析了工作时序对多台推力器启动过程响应特性的影响,并分析了室压超调量和响应时间的变化规律。结果表明:多台推力器同时启动,会延长系统响应时间,增大室压超调量,对系统工作产生不利影响;燃料管路响应快,但流量超调量较大,不利于流量快速稳定;氧化剂管路流量波动剧烈,需要更长的时间达到稳定;合理地选取启动间隔时间,能有效降低多台推力器启动耦合作用,提升系统启动过程快速响应能力。 In view of the adverse effects of the coupling of multiple thrusters on the response characteristics, the simulation model of low-thrust propulsion system is built based on AMESim simulation software. The influence of working timing on the response characteristics of multiple thrusters is analyzed, and the changes of chamber pressure overshoot and response time are analyzed. The results show that the simultaneous activation of multiple thrusters will prolong the response time of the system and increase the overshoot of the chamber pressure, which will adversely affect the work of the system. The fuel line responds quickly, but the flow overshoot is large, which is not conducive to the fast and stable flow. The flow of the oxidant pipeline fluctuates violently and takes a longer time to achieve stability. A reasonable selection of starting interval time can effectively reduce the coupling effect of multiple thrusters and improve the quick response ability of the system during start process.
作者 杨林涛 沈赤兵 Yang Lin-tao;Shen Chi-bing(Science and Technology on Scramjet Laboratory,College of Aerospace Science,National University of Defense Technology,Changsha,410073)
出处 《导弹与航天运载技术》 CSCD 北大核心 2019年第5期48-52,共5页 Missiles and Space Vehicles
基金 国家自然科学基金(11572346)
关键词 液体火箭发动机 小推力推进系统 启动过程 响应特性 liquid rocket engine low-thrust propulsion system start process response characteristics
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  • 1张小平.补燃循环发动机起动过程仿真研究[J].火箭推进,2003,29(3):18-21. 被引量:7
  • 2马和平,李会元.Super spectral viscosity method for nonlinear conservation laws[J].Journal of Shanghai University(English Edition),2006,10(1):9-14. 被引量:5
  • 3徐浩海,刘站国.补燃循环发动机起动过程涡轮功率控制[J].火箭推进,2006,32(4):10-14. 被引量:11
  • 4Wang W J. Application of wavelets to gearbox vibration signals for fault detection [J]. J. of Sound and Vibration, 1996, 192(5) : 927-939.
  • 5New Iand D E. An introduction to random vibrations, spectral and wavelet analysis [M]. London: Longman Scientific and Technical, 1993: 23-40.
  • 6Lin Feng. Practical issues of wavelet analysis of unsteady rotor tip flows in compressors: AIAA paper 2002-4082[ C]//38th AIAMASME/SAE/ASEE Joint Propulsion Conference. Indianapolis, Indiana: Aerospace Industries Association of America, 2002: 1-8.
  • 7Brown Clifford. Wavelet based analysis of rotating stall and surge in a high speed centrifugal compressor: AIAA Paper 2002-4080[ C]//38th MAM ASME/SAE/ASEE Joint Propulsion Conference. Indianapolis, Indiana: Aerospace Industries Association of America, 2002: 1-12.
  • 8Lind Rick, Marry Brenner. Robust flutter margins of an F/A-18 aircraft from aeroelastic flight data[J]. AIAA Journal of Guidance, Control, and Dynamics, 1997, 2: 79-86.
  • 9陶玉静.液体火箭发动机响应特性研究及稳定性的非线性分析.长沙:国防科学技术大学研究生院,2006:78-82.
  • 10Baju M S. Numerical investigation of various atomization models in the modeling of a spray flame. AIAA, 2006 : 176.

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