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Observation of Inception of Sheet Cavitation from Free Nuclei

机译:游离核片空化开始的观察

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Prediction of inception of sheet cavitation on solid walls has been recognized to be very difficult, since it is significantly affected by the boundary layer flow characteristics, the population of free nuclei, the nuclei held in the wall roughness, the amount of dissolved air in liquid and so on.It has not sufficiently been made clear how the inception is affected by the conditions of such water qualities and background flow characteristics.In this study, high speed observation of inception of sheet cavity from free nuclei is conducted for a two-dimensional convergent-divergent nozzle flow, where the sheet cavity forms just downstream of the nozzle throat.The effects of the amount of dissolved air and the free stream velocity on the inception process of sheet cavitation is examined.In addition, the bubble nuclei density, which is well known to be important factor for cavitation inception, is passively controlled by the filter installed in the tunnel.From the observations, it is confirmed that the nuclei number density significantly affects the formation of sheet cavity rather than the other two parameters.In conditions with large nuclei number density, the sheet cavity does not form, and bubbly cavitation appears instead.In the case with small nuclei number density, the sheet cavity forms from a single flowing nucleus and develops streamwisely and spanwisely.In the conditions with medium nuclei number density, the sheet cavity also forms but is shorterarrower streamwisely/spanwisely, due to interaction of other nuclei flowing near the formed sheet cavity.
机译:已经认识到很难预测固体壁上的气蚀现象,因为它受到边界层流动特性,自由核的数量,壁中保持的核的粗糙度,液体中溶解空气的量的显着影响。这种水质条件和背景流动特性的条件如何影响初始反应,目前尚不清楚。在本研究中,对二维自由核的薄板腔初始进行了高速观察。喷嘴管的收敛-发散喷嘴流,在喷嘴喉的下游形成薄板腔,研究了溶解空气量和自由流速度对薄板空化开始过程的影响,此外,还发现了气泡核密度众所周知,它是引起气蚀的重要因素,它是由安装在隧道中的过滤器被动控制的。认为核数密度显着影响板腔的形成,而不是其他两个参数。在核数密度大的条件下,不形成板腔,而出现气泡化空化;在核数密度小的情况下,片腔由单个流动的核形成,并沿流向和跨度发展。在中等核数密度的条件下,由于在形成的片腔附近流动的其他原子核的相互作用,片腔也形成但沿流向/跨度变短/变窄。

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