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Viscous Effects in Inception and Development of Cavitation on Axi-Symmetric Bodies Part I - Cavitation Inception Part II - A Semi-Empirical Method to Predict Cavitation Separation on Smooth Bodies

机译:轴对称物体空化开始和发展中的粘滞作用第一部分-空化开始第二部分-预测光滑物体空化分离的半经验方法

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摘要

The schlieren method was developed as a flow visualizationudtechnique for use in water tunnels. The process of cavitation development on two axi-symmetric bodies was studied using this approach and found to be greatly influenced by the presence of a previously unreportedudviscous laminar separation. On these bodies, cavitation inception was observed to take place within this separated region which occurs far downstream of the minimum pressure point. On one of these bodies, the incipient cavitation index was found to be closely correlated with theudnegative value of the pressure coefficient at the point of laminar separation. Approximate computations of the position of transition on a body without laminar separation indicate that the incipient cavitation indexudis closely correlated with the negative value of the pressure coefficient at the predicted point of transition.ududCavitation separation under fully developed conditions is found to be preceded by a viscous laminar boundary layer separation on bodies which possess the latter separation under fully wetted conditions. An empirical method is proposed to compute the position of cavitationudseparation on such bodies and the method applied to a sphere and a cylinder showed good agreement with experiments.
机译:schlieren方法是作为流可视化 udtechnique在水隧道中使用而开发的。使用这种方法研究了在两个轴对称物体上发生空化的过程,发现该过程受以前未报道的粘稠状层流分离的影响很大。在这些物体上,观察到空化开始发生在该分离区域内,该区域发生在最小压力点的下游。在这些物体之一上,发现初始空化指数与层流分离点的压力系数的负值密切相关。对没有层流分离的物体上的过渡位置进行的近似计算表明,初始空化指数 udis与预测的过渡点处的压力系数的负值密切相关。 ud ud在充分发展的条件下发现了空化分离在物体上进行粘性层流边界层分离之前,该物体在完全湿润的条件下具有后者的分离。提出了一种经验方法来计算汽蚀不分离在此类物体上的位置,该方法在球体和圆柱体上的应用与实验结果吻合良好。

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    Arakeri Vijay H.;

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  • 年度 1973
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