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Numerical Analysis of Suppression Effect of Asymmetric Slit on Cavitation Instabilities in Cascade

机译:非对称切口抑制效应对级联空化无限度的数值分析

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In this study, numerical analysis is carried out around the cyclic flat-plate cascade with symmetric and asymmetric slit, so as to examine the suppressing or controlling effect of the slit on cavitation instabilities such as cavitation oscillation (CO) which resembles cavitation surge, and rotating cavitation. These instabilities cause various problems for the turbomachinery, for example, rotating cavitation causes an asynchronous shaft vibration, and CO causes an oscillation of column of working fluid as a result of the resonance phenomenon of the system. In liquid propellant rocket engine, suppression device for these instabilities bring increase in cost of the launch. Therefore, it is thought that to develop effective suppression technique is important for turbopumps. Especially, in this paper, two types of the flat-plate three blades cascade which have symmetric slit on each blade and three types of the cascade which have asymmetric slit were analyzed, and the results are compared with those of cascade without slit. As a result, the CO is perfectly suppressed in both of two types cascade with asymmetric slit. Also, other examined cascades have suppression effect of CO These results indicate the possibility of suppressing cavitation instabilities in actual inducers or controlling the type of the cavitation instabilities by the arrangement of the slit. Moreover, the head performance is equal or slightly increased by arranging slit.
机译:在该研究中,用对称和不对称的狭缝围绕循环平板级联进行数值分析,以检查狭缝对空化振荡(CO)的抑制或控制效果,如空化振荡(CO),类似于空化浪涌,以及旋转空化。这些不稳定性导致涡轮机械的各种问题,例如,旋转空化导致异步轴振动,并且由于系统的共振现象而导致工作流体柱的振荡。在液体推进剂火箭发动机中,这些不稳定性的抑制装置增加了发射成本。因此,认为开发有效的抑制技术对于涡轮泵很重要。特别是,在本文中,分析了两种类型的平板三个叶片,其在每个叶片上具有对称切口的级联和具有不对称切片的三种类型的级联,并将结果与​​级联而无狭缝的级联进行比较。结果,在具有不对称狭缝的两种类型级联中,CO在两种类型中完全抑制。而且,其他检查的级联具有CO的抑制效果这些结果表明通过狭缝的布置来抑制实际诱导件中的空化稳定性或控制空化稳定性的类型的可能性。此外,通过布置狭缝,头部性能等于或略微增加。

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