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Time resolved PIV and flow visualization of 3D sheet cavitation

机译:时间分辨的PIV和3D板材气蚀的流动可视化

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摘要

Time-resolved PIV was applied to study fully developed sheet cavitation on a hydrofoil with a spanwise varying angle of attack. The hydrofoil was designed to have a three-dimensional cavitation pattern closely related to propeller cavitation, studied for its adverse effects as vibration, noise, and erosion production. For the PIV measurements, fluorescent tracer particles were applied in combination with an optical filter, in order to remove the reflections of the laser lightsheet by the cavitation. An adaptive mask was developed to find the interface between the vapor and liquid phase. The velocity at the interface of the cavity was found to be very close to the velocity predicted by a simple streamline model. For a visualization of the global flow dynamics, the laser beam was expanded and used to illuminate the entire hydrofoil and cavitation structure. The time-resolved recordings reveal the growth of the attached cavity and the cloud shedding. Our investigation proves the viability of accurate PIV measurements around developed sheet cavitation. The presented results will further be made available as a benchmark for the validation of numerical simulations of this complicated flow.
机译:时间分辨的PIV被用于研究在翼展方向上变化迎角变化的水翼上的完全展开的气穴现象。该水翼被设计成具有与螺旋桨空化紧密相关的三维空化模式,研究了其对振动,噪声和腐蚀产生的不利影响。对于PIV测量,将荧光示踪剂颗粒与光学滤光片结合使用,以消除由于气蚀而产生的激光片的反射。开发了一种自适应掩模来寻找汽相和液相之间的界面。发现腔界面处的速度与简单流线模型预测的速度非常接近。为了可视化整体流动动力学,激光束被扩展并用于照亮整个水翼和空化结构。时间分辨的记录揭示了附着腔的生长和云的脱落。我们的研究证明了围绕发达的气蚀现象进行准确的PIV测量的可行性。提出的结果将进一步用作验证这种复杂流动的数值模拟的基准。

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  • 来源
    《Experiments in Fluids》 |2006年第4期|503-513|共11页
  • 作者单位

    Laboratory of Ship Hydromechanics Delft University of Technology Mekelweg 2 2628 CD Delft The Netherlands;

    Laboratory of Ship Hydromechanics Delft University of Technology Mekelweg 2 2628 CD Delft The Netherlands;

    Laboratory of Ship Hydromechanics Delft University of Technology Mekelweg 2 2628 CD Delft The Netherlands;

    LaVision GmbH Anna-Vandenhoek-Ring 19 37081 Goettingen Germany;

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