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METHOD FOR REGULATION OF OPERATION MODE OF LIQUID-PROPELLANT ENGINE

机译:液体火箭发动机工作模式的调节方法

摘要

FIELD: technical cybernetics, computer engineering. SUBSTANCE: method involves continuous monitoring of pressure, temperature and usage of components of fuel that enter engine and rotation of shaft of turbine pump after engine reaches main traction stage mode. In addition, method involves detection of value of cavitation pressure tolerance, and continuous comparison of resulted value to tolerant level. When cavitation pressure tolerance drops below threshold, method involves regulation of through section of regulation unit, switching engine to mode at which pressure that corresponds to beginning of cavitation break of pump is decreased and cavitation tolerance of engine is increased. Stability of engine to side and cavitation oscillations in pressure is increased by means of analysis of frequency and amplitude of pressure oscillations at entrance to engine. If oscillations develop (their amplitude is increased), method involves setting through section alteration of regulation unit towards operation mode that provides quenching of self-oscillations. EFFECT: increased efficiency due to decreased pressure in rocket tanks and possibility of engine operation upon faults in supply and temperature-keeping systems. 2 cl, 1 dwg, 2 tbl
机译:领域:技术控制论,计算机工程。实质:该方法包括在发动机进入主牵引级模式后,连续监测进入发动机的压力,温度和燃料成分的使用以及涡轮泵轴的旋转。另外,该方法涉及检测气穴压力公差的值,并将结果值与公差水平进行连续比较。当汽蚀压力容限下降到阈值以下时,该方法涉及调节调节单元的通过部分,将发动机切换到模式,在该模式下,与泵的汽蚀中断开始相对应的压力减小,而发动机的汽蚀容限增加。通过分析发动机入口处压力振荡的频率和幅度,可以提高发动机的侧向稳定性和气穴振荡。如果发生振荡(振幅增加),则该方法涉及通过将调节单元的截面更改设置为提供自激猝灭的操作模式来进行设置。效果:由于火箭箱中压力的降低以及由于供气和保温系统故障而使发动机运转的可能性,提高了效率。 2 cl,1 dwg,2汤匙

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