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NUMERICAL ANALYSIS OF CAVITATION INSTABILITIES IN INDUCER BLADE CASCADE

机译:感应叶片叶栅空化不稳定性的数值分析

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摘要

The cavitation behavior of a four-blade rocket engine turbopump inducer was simulated by the CFD code Fine/Turbo™. The code was modified to take into account a cavitation model based on a homogeneous approach of cavitation, coupled with a barotropic state law for the liquid/vapor mixture. In the present study, the numerical model of unsteady cavitation was applied to a four-blade cascade drawn from the inducer geometry. Unsteady behavior of cavitation sheets attached to the inducer blade suction side depends on the flow rate and cavitation number σ. Numerical simulations of the transient evolution of cavitation on the blade cascade were performed for nominal flow rate and different cavitation numbers, taking into account simultaneously the four blade-to-blade channels. Depending on the flow parameters, steady or unsteady behaviors spontaneously take place. In unsteady cases, sub synchronous or super synchronous regimes were observed. Some mechanisms responsible for the development of these instabilities are proposed and discussed.
机译:通过CFD代码Fine / Turbo™模拟了四叶片火箭发动机涡轮泵诱导器的气蚀行为。对代码进行了修改,以考虑到基于空化均质方法的空化模型,并结合了液/气混合物的正压状态定律。在本研究中,非定常气蚀的数值模型被应用于从诱导器几何形状得出的四叶片叶栅。附着在诱导叶片吸力侧的气蚀片的不稳定特性取决于流量和气蚀数σ。针对标称流量和不同的气蚀次数,对叶片级联上的气蚀瞬态演变进行了数值模拟,同时考虑了四个叶片到叶片的通道。根据流量参数,自然发生稳态或非稳态行为。在不稳定情况下,观察到次同步或超同步状态。提出并讨论了造成这些不稳定性的一些机制。

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