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Design Method for Contra-Rotating Propellers for High-Speed Crafts: Revising the Original Lerbs Theory in a Modern Perspective

机译:高速航行器对转螺旋桨的设计方法:现代视角下对原始勒布斯理论的修正

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The main theoretical and numerical aspects of a design method for optimum contrar-rotating (CR) propellers for fast marine crafts are presented. We propose a reformulated version of a well-known design theory for contra-rotating propellers, by taking advantage of a new fully numerical algorithm for the calculation of the mutually induced velocities and introducing new features such as numerical lifting surface corrections, use of an integrated modern cavitation/strength criteria, a modified method to consider different numbers of blades among the two propellers, and to allow for an unloading function in the search for the optimal circulation distribution. The paper first introduces the main theoretical principles of the new methods and then discusses the influence of the main design parameters on an emblematic example of application in the case of counter rotating propellers for a pod propulsor designed for fast planing crafts (35 knots and above).
机译:介绍了用于快速船舶的最佳反向旋转(CR)螺旋桨设计方法的主要理论和数值方面。通过利用新的全数值算法来计算相互感应的速度,并引入新的功能(例如数值升力面修正,使用集成的积分),我们提出了针对逆向螺旋桨的著名设计理论的改进版。现代的气蚀/强度标准,这是一种改进的方法,可以考虑两个螺旋桨之间叶片的数量不同,并在寻找最佳循环分配时具有卸荷功能。本文首先介绍了新方法的主要理论原理,然后讨论了主要设计参数对在为快速滑行飞机(35节及以上)设计的吊舱推进器的反向旋转螺旋桨情况下应用示例性象征的影响。 。

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