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首页> 外文期刊>Applied Ocean Research >Design of wake-adapted contra-rotating propellers for high-speed underwater vehicles
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Design of wake-adapted contra-rotating propellers for high-speed underwater vehicles

机译:用于高速水下车辆的唤醒适应的对抗旋转螺旋桨设计

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Based on the lifting-surface vortex lattice model, a numerical design method of wake-adapted contra-rotating propellers (CRPs) for high-speed underwater vehicles is proposed. According to the given radial circulation distribution, the method can use prescribed camber line shapes to design maximum cambers and pitches of blade sections by controlling circulation at the leading edge, which makes the chordwise distribution of blade loading similar to that of NACA a = 0.8. It also can be performed under prescribed chordwise circulation distributions, where camber line shape and blade section pitch are designed. The Newton-Raphson iterative algorithm is utilised in the design of the pitch and camber. The radial circulation distribution of a set of CRPs for an underwater vehicle is used to redesign CRPs by the proposed method, and the design results are then validated via numerical simulations by solving the Reynolds-averaged Navier-Stokes equations. The results indicate that the proposed method is suitable for the design of CRPs with tapered hubs and skewed blades, and it also exhibits good mesh convergence. The CRPs designed with the given camber line shape and the given chordwise loading distribution both have relatively uniform pressure distributions, with the latter being superior.
机译:基于升降表面涡流晶格模型,提出了一种用于高速水下车辆的唤醒适应的对抗螺旋桨(CRP)的数值设计方法。根据给定的径向循环分布,该方法可以通过控制前缘处的循环来使用规定的弯曲线形状来设计最大壁角和叶片部分的桨距,这使得叶片装载的曲线分布类似于NaCA A = 0.8的叶片载荷。它还可以在规定的曲线循环分布下进行,其中设计了露角形状和叶片部分间距。 Newton-Raphson迭代算法用于俯仰和弯曲的设计。用于水下车辆的一组CRP的径向循环分布用于通过所提出的方法重新设计CRP,然后通过求解雷诺平均Navier-Stokes方程,通过数值模拟验证设计结果。结果表明,该方法适用于具有锥形轮毂和歪斜刀片的CRP的设计,并且还表现出良好的网格趋同。使用给定的弯刀形状和给定​​的曲线装载分布设计的CRP具有相对均匀的压力分布,后者是优越的。

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