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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Numerical investigation on cavitation instability and flow-induced vibration of liquid rocket engine inducer
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Numerical investigation on cavitation instability and flow-induced vibration of liquid rocket engine inducer

机译:液体火箭发动机诱导型空化不稳定性和流动诱导振动的数值研究

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The objective of this paper is to numerically investigate the unsteady cavitating flow around a four-blade inducer, with focus on the cavitation instability and the flow-induced vibration characteristics. In the numerical simulation, the modified rotation/curvature correction turbulence model and the Zwart cavitation model are used for the simulation of the flow field. The tightly coupled algorithm is adopted for the precise prediction of the fluid-structure interaction, including the calculation of the hydrodynamic loads based on the multiphase fluid dynamics and the computation of the structural displacement via the Finite Element Method (FEM). The results showed that good agreement has been obtained between the experimental and numerical results. The fluctuation of cavity volume is the main cause of the change in the head of the inducer, and the backflow vortex cavitation has little effect on that at this flow condition. The backflow vortex cavity develops and rotates with the blades of the inducer, but with a much lower rotational velocity than that of the blades. The flow-induced vibration of the inducer caused by the unsteady cavitating flow mainly manifests as a first-order bending mode. The backflow vortex cavitation has a significant impact on the vibration of both the blades and the guide-water cone. Besides, a cavitation auto-oscillation at the inlet of the inducer has also been detected based on the phase correlation analysis.
机译:本文的目的是在数值上研究四刀片诱导物周围的不稳定空腔流动,重点是空化不稳定性和流动引起的振动特性。在数值模拟中,改进的旋转/曲率校正湍流模型和Zwart空化模型用于模拟流场。采用紧密耦合的算法用于精确预测流体结构相互作用,包括基于多相流体动力学的流体动力载荷的计算和通过有限元方法(FEM)计算结构位移的计算。结果表明,在实验和数值效果之间获得了良好的一致性。腔体积的波动是诱导器头部变化的主要原因,并且回流涡流空化对该流动条件的影响几乎没有影响。回流涡流腔用诱导器的刀片开发和旋转,但是旋转速度远低于叶片的旋转速度。由非定常的空化流引起的诱导器的流动诱导的振动主要显现为一阶弯曲模式。回流涡流空化对叶片和导向水锥的振动具有显着影响。此外,还基于相位相关性分析检测诱导剂入口处的空化自动振荡。

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