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Numerical Performance Investigations of Screw Propellers by Lifting Surface Theory

机译:螺旋桨升力面理论的数值研究。

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摘要

In conjunction with the developments in the computer technologies over the last three decades, lifting surface methods based on the circulation theory are often used for the design and analysis of screw propellers. In this study, the flow around of propeller blades is analyzed and performance characteristics of screw propellers have been examined for the different cases such as various pitch ratios, blade numbers and expanded ratios. To do this analysis, KUMS's (Kobe University Maritime Sciences) program based on lifting surface theory, which was generated in the Kobe University, has been used. The KUMS's code models the flow around of the propeller by representing the blade and wake as a discrete set of vortices and sources, which are properly distributed on the mean camber and wake surfaces to represent blade loading and blade thickness respectively. Finally, a series of results have been obtained in the case of standard screw propellers and results are compared with those of experimental data whose geometric characteristics were given in the literature and PUF code written by Kerwin. Subsequently, general assessments have been done about attained results.
机译:结合最近三十年来计算机技术的发展,基于循环理论的起升表面方法通常用于螺旋桨的设计和分析。在这项研究中,分析了螺旋桨叶片的绕流情况,并针对各种情况(例如各种变桨比,叶片数和膨胀比)检查了螺旋桨的性能特征。为了进行此分析,使用了基于神户大学生成的基于举升表面理论的KUMS(神户大学海洋科学)程序。 KUMS的代码通过将叶片和尾流表示为一组离散的涡流和源,对螺旋桨周围的流动进行建模,这些涡流和源分别适当地分布在平均曲面和尾流表面上,分别表示叶片的载荷和叶片的厚度。最后,在使用标准螺旋桨的情况下获得了一系列结果,并将这些结果与实验数据进行了比较,这些实验数据的几何特性在文献中以及由Kerwin编写的PUF代码中给出。随后,对获得的结果进行了总体评估。

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