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Wake-adapted design of fixed guide vane type energy saving device for marine propeller

机译:船用螺旋桨固定导叶式节能装置的尾流适应设计

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摘要

A wake-adapted design method of downstream fixed guide vanes (FGV) for marine propeller is proposed based on propeller vortex theory (PVT) and surface panel method (SPM). The FGV is designed to recover the slipstream rotational energy of propeller into an additional thrust. The hydrodynamic interaction between the propeller and the FGV is the key point in the combined propulsor design and is considered through induced velocities calculated by SPM. As the guide vanes are fixed and work in nonuniform wake field, different blades have significantly different inflow velocities. Therefore, the blades of FGV ought to be designed independently. The radial circulation distributions of the combined propulsor as well as the tangential induced velocities in the slipstream are calculated to validate the energy saving principle of FGV. The results of design case study indicate that the FGV after propeller can recover the slipstream rotational energy of propeller effectively.
机译:基于螺旋桨涡旋理论(PVT)和面板法(SPM),提出了一种适用于船舶螺旋桨下游固定导流叶片(FGV)的尾流适应设计方法。 FGV旨在将螺旋桨的滑流旋转能量恢复为附加推力。螺旋桨和FGV之间的水动力相互作用是组合推进器设计的关键,并通过SPM计算出的感应速度来考虑。由于导向叶片是固定的,并且在非均匀的尾流场中工作,因此不同的叶片具有明显不同的流入速度。因此,FGV的叶片应独立设计。计算了组合推进器的径向循环分布以及滑流中的切向感应速度,以验证FGV的节能原理。设计实例研究结果表明,螺旋桨后的FGV可以有效地回收螺旋桨的滑流旋转能量。

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