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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Dynamic Model-Based Identification of Cavitation Compliance and Mass Flow Gain Factor in Rocket Engine Turbopump Inducers
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Dynamic Model-Based Identification of Cavitation Compliance and Mass Flow Gain Factor in Rocket Engine Turbopump Inducers

机译:基于动态模型的空化合规识别和火箭发动机涡轮箱型诱导件中的气相依从性和质量流量增益因子

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摘要

Cavitation dynamics continue to pose a significant risk in the development and operation of launch vehicle (LV) propulsion systems. In addition to generating unsteady loads that can directly damage turbopump hardware, cavitation dynamics often couple with LV fluid feed systems, producing system wide POGO instability that can cause catastrophic failures. Despite its importance, the current understanding of cavitation dynamics, and especially pump transfer matrices, is limited. Given the relatively sparse amount of inducer transfer matrix data available, there is a critical need for more in-depth characterization of the cavitation dynamics in turbopump inducers to avoid POGO instability. This paper defines and validates a new reduced-order approach to infer key parameters such as cavitation compliance, K, and mass flow gain factor, M, from simple, single sensor unsteady pressure measurements during inducer inlet pressure ramps. The utility of this approach is demonstrated for a range of inducer geometries reported in the literature. The results are in agreement with experimental data and the paper provides a new capability supporting the assessment of LV POGO instability.
机译:空化动力学继续在发射车辆(LV)推进系统的开发和运行中提出重大风险。除了产生直接损坏Turbopump硬件的不稳定负载外,空化动力学往往与LV流体供给系统相结合,生产系统宽的Pogo不稳定性,可能导致灾难性失败。尽管重要的是,目前对空化动力学和特别是泵送矩阵的理解是有限的。鉴于可用的诱导物传递矩阵数据的相对稀疏量,需要对涡轮泵诱导件中的空化动力学进行更多的深入表征以避免Pogo不稳定性。本文定义并验证了新的减少阶级方法,以推断出诱导物入口压力坡道的简单单个传感器不稳定压力测量诸如空化合规性,K和质量流量增益因子M.在文献中报道的一系列诱导物几何形状证明了这种方法的效用。结果与实验数据一致,本文提供了一种支持LV Pogo不稳定评估的新功能。

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