首页> 外文期刊>Journal of Flow Control, Measurement & Visualization >Unsteady Behavior of Cavitating Waterjet in an Axisymmetric Convergent-Divergent Nozzle: High Speed Observation and Image Analysis Based on Frame Difference Method
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Unsteady Behavior of Cavitating Waterjet in an Axisymmetric Convergent-Divergent Nozzle: High Speed Observation and Image Analysis Based on Frame Difference Method

机译:空化射流在轴对称收敛-发散喷嘴中的非稳态行为:基于帧差法的高速观测和图像分析

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Although it is well known that cloud cavitation shows unsteady behavior with the growing motion of an attached cavity, the shedding motion of a cloud, the collapsing motion of the cloud shed downstream and a reentrant motion in flow fields such as on a 2-D hydrofoil and in a convergent- divergent channel with a rectangular cross-section, observations for the periodic behavior of cloud cavitation in a cylindrical nozzle with a convergent-divergent part, which is mainly used in an industrial field, have hardly been conducted. From engineering viewpoints, it is important to elucidate the mechanism of periodic cavitation behavior in a cylindrical nozzle. In this study, a high-speed observation technique with an image analysis technique was applied to the cloud cavitation behavior in the nozzle to make clear the mechanism of unsteady behavior. As a result, it was observed in the nozzle that the periodic behavior occurs in the cloud cavitation and pressure waves form at the collapse of clouds shed downstream. Also, it was found through the image analysis based on the present technique that the pressure wave plays a role as a trigger mechanism to cause a reentrant motion at the downstream end of an attached cavity.
机译:尽管众所周知,随着连接腔的运动不断增长,云的空化表现出不稳定的行为,云的脱落运动,云的塌陷运动向下游脱落,以及流场(例如二维水翼)上的折返运动在具有矩形横截面的会聚-发散通道中,几乎没有观察到主要在工业领域中使用的具有会聚-发散部分的圆柱形喷嘴中的云空化的周期性行为。从工程角度来看,阐明圆柱形喷嘴中周期性气蚀行为的机理很重要。在这项研究中,将高速观察技术和图像分析技术应用于喷嘴中的云空化行为,以弄清不稳定行为的机理。结果,在喷嘴中观察到,周期性行为在云气蚀中发生,并且在下游流云的塌陷处形成压力波。而且,通过基于本技术的图像分析发现,压力波起着触发机制的作用,以引起在附接腔的下游端的折返运动。

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