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Twisted rudder for reducing fuel-oil consumption

机译:扭转舵减少燃油消耗

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ABSTRACT Three twisted rudders fit for large container ships have been developed; 1) the Z-twisted rudder that is an asymmetry type taking into consideration incoming flow angles of the propeller slipstream, 2) the ZB-twisted rudder with a rudder bulb added onto the Z-twisted rudder, and 3) the ZB-F twisted rudder with a rudder fin attached to the ZB-twisted rudder. The twisted rudders have been designed computationally with the hydrodynamic characteristics in a self-propulsion condition in mind. The governing equation is the Navier-Stokes equations in an unsteady turbulent flow. The turbulence model applied is the Reynolds stress. The calculation was carried out in towing and self-propulsion conditions. The sliding mesh technique was employed to simulate the flow around the propeller. The speed performances of the ship with the twisted rudders were verified through model tests in a towing tank. The twisted versions showed greater performance driven by increased hull efficiency from less thrust deduction fraction and more effective wake fraction and decreased propeller rotating speed.
机译:摘要已开发出适用于大型集装箱船的三种扭曲舵。 1)考虑到螺旋桨滑流的入流角的非对称Z型双舵舵; 2)ZB型双舵舵,并在Z型双舵舵上增加了舵球; 3)ZB-F型双舵舵,舵鳍附在ZB扭转舵上。螺旋舵的设计考虑了自推进条件下的流体动力学特性。控制方程是非稳定湍流中的Navier-Stokes方程。所应用的湍流模型是雷诺应力。计算是在牵引和自推进条件下进行的。滑动网格技术被用来模拟螺旋桨周围的流动。通过在拖曳舱中进行模型测试,验证了带有扭转舵的船舶的速度性能。扭曲版本显示出更高的性能,这是由于更少的推力推算分数和更有效的尾流分数以及降低的螺旋桨转速所带来的更高的船体效率所驱动。

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