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Experimental investigation and numerical prediction of cavitation incurred on propeller surfaces

机译:螺旋桨表面上造成的空化的实验研究和数值预测

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Multiple types of cavitation appearing on the surface of a marine propeller when the ship advances with high speed cause the decline of the propeller's performance and/or damages (erosions) to the propeller. Therefore, better understandings of the cavitation formations and the ability to predict them are important to a successful propeller design. This paper presents image results of cavitation incurred on the suction surfaces of a specific propeller and analyzes these images to obtain the statistical parameters of cavitations such as their sizes, locations, and occupied areas. These experimental results are used to evaluate the accuracy of the associated RANS simulations in order to identify issues of turbulence and cavitation models commonly used in such simulations.
机译:在船舶螺旋桨的表面上出现多种类型的空穴,当船舶高速进步时导致螺旋桨性能和/或损坏的损坏(侵蚀)的衰退到螺旋桨下降。因此,更好地了解空化结构和预测它们对成功的螺旋桨设计很重要。本文提出了在特定推进器的吸入表面上产生的空化的图像结果,并分析这些图像以获得空化的统计参数,例如它们的尺寸,位置和占用区域。这些实验结果用于评估相关RANS模拟的准确性,以确定在这种模拟中常用的湍流和空化模型的问题。

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