首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Thomas/Alford Force on a Partial-Admission Turbine for the Rocket Engine Turbopump
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Thomas/Alford Force on a Partial-Admission Turbine for the Rocket Engine Turbopump

机译:托马斯/阿尔福德力量在锁模发动机涡轮泵的部分入场涡轮机上

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摘要

This paper describes an imbalanced torque force, called the Thomas/Alford force, of a partial-admission turbine for the rocket engine turbopump. The Thomas/Alford force is a destabilizing force imposed on the rotor that could cause rotor dynamic instability. This, in turn, may impair stable operation of the rocket engine and trigger mission failure. Such destabilizing force should be avoided as its characteristics have not been discussed in detail. In this study, Thomas/Alford forces for typical symmetric partially open/closed nozzle patterns with an open/closed ratio are analyzed. For such an open/closed ratio, it was determined that the Thomas/Alford force varied with the whirling angle, and whether the openl/closed ratio may impair stable operation and reliability of the rocket engine turbopump is contingent on avoiding such fluctuation. The reason for such fluctuation was investigated by mathematical methodology, which was then extended to determine a general rule of patterns for rocket engine designers. This rule would, thus, prove useful in the future development of a partial-admission turbine for a rocket engine turbopump.
机译:本文描述了一种不平衡的扭矩力,称为托马斯/阿尔福德力,用于火箭发动机涡轮泵的部分入场涡轮机。托马斯/阿尔福德力是一种稳定在转子上的稳定力,可能导致转子动态不稳定。反过来,这可能会损害火箭发动机的稳定运行并触发任务失败。应避免这种稳定的力,因为它的特性尚未详细讨论。在本研究中,分析了托管/阿尔福德力的典型对称部分打开/封闭喷嘴图案,具有开放/封闭比率。对于这种开放/封闭的比率,确定托马斯/阿尔福德力随着旋转角度而变化,并且开孔/封闭比率是否可能损害稳定的运行,并且火箭发动机涡轮泵的可靠性取决于避免这种波动。通过数学方法研究了这种波动的原因,然后延伸到确定火箭发动机设计人员的一般规则。因此,该规则将在未来开发火箭发动机涡轮泵的未来发展中有用。

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