Unsteady lifting surface flows are important subjects for study, both for the purposes of improving propulsive or lifting efficiency and also for mitigating the destructive effects and noise caused by cavitation. Some progress may be made by selecting a simple type of unsteadiness for closer study. In the present work, this tactic was implemented in two ways: the operation of a propeller at an angle of yaw to the freestream and the pitching oscillation of a finite-span hydrofoil.ududA new facility was designed and constructed to set a propeller at an angle of yaw to the freestream, creating a fairly simple non-uniformity in the propeller inflow. Tip vortex cavitation inception measurements were made for a range of yaw angles and freestream velocities, and photographs of the cavitation were taken to illustrate the effects of the yaw angle.ududThe unsteady tip vortex flow field was measured on an oscillating finite aspect ratio hydrofoil using Particle Image Velocimetry (PIV), revealing how the circulation varied during a typical oscillation cycle. The results were compared with unsteady infinite-span theory, and also with recent measurements using LDV techniques on the same foil.ududThe hydrofoil was also the focus of a study of surface cavitation. High-speed motion pictures of the cavitation cycle helped to separate the process into its component stages, and variations with cavitation number and reduced frequency of oscillation were observed. The acoustic signals generated by the cavity collapse were correlated with the motion pictures, providing insights into the correspondence between the flow structures involved in the cavity collapse process and the sound generated by them.ududThe results from these studies provide valuable insights into the effects of unsteadiness in lifting surface flows.ud
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机译:不稳定的提升表面流是研究的重要课题,既可以提高推进效率或提升效率,又可以减轻气蚀引起的破坏性影响和噪声。通过选择一种简单的不稳定类型进行进一步研究,可能会取得一些进展。在目前的工作中,该策略以两种方式实施:螺旋桨相对于自由流偏航角的操作以及有限跨度水翼的俯仰振荡。 ud ud设计并建造了新的设施来设定螺旋桨与自由流成偏航角,在螺旋桨流入中产生相当简单的不均匀性。进行了一系列偏航角和自由流速度的尖端涡流空化开始测量,并拍摄了空化照片以说明偏航角的影响。 ud ud不稳定的尖端涡流场是根据振荡有限长宽比进行测量的使用粒子图像测速(PIV)的水翼,揭示了在典型的振荡周期中循环是如何变化的。将结果与非定常无限跨度理论进行了比较,并与最近在同一箔上使用LDV技术进行的测量结果进行了比较。 ud ud水翼型也是表面空化研究的重点。空化循环的高速运动图像有助于将过程分为各个组成阶段,并观察到空化数和振荡频率降低的变化。空腔塌陷产生的声信号与运动图像相关,从而洞悉了空腔塌陷过程中涉及的流动结构与其所产生的声音之间的对应关系。不稳定对提升面流的影响。 ud
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