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首页> 外文期刊>Ocean Engineering >Impacts of the rudder profile on manoeuvring performance of ships
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Impacts of the rudder profile on manoeuvring performance of ships

机译:舵轮廓对船舶操纵性能的影响

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摘要

The profile of a ship rudder influences the forces it generates, which in turn influence the manoeuvring performance of a ship. Thus, rudder forces and moments should be calculated considering the profile. Instead of an empirical estimation of the rudder normal force coefficient, this paper applies a RANS method to determine the hydrodynamic characteristics of various profiles, i.e. lift and drag coefficients. The RANS method is validated with a classic NACA 0012 profile and applied to 9 profiles from the NACA series, the wedge-tail series, and the IFS series. Furthermore, the 2D open-water RANS results are corrected for the effects of the propeller slipstream and the rudder aspect ratio. New regression formulas of the normal force coefficients are proposed for the tested profiles. These formulas are then integrated into a standard MMG model. Taking the KVLCC2 tanker as a reference ship, the manoeuvring model is validated with free-running tests executed by MARIN. Finally, the manoeuvring performance of the reference ship with various rudder profiles are quantified with turning and zigzag manoeuvres. The simulation results confirm that the wedge-tail series is most effective (largest manoeuvring forces) while the NACA series is most efficient (highest lift to drag ratio) among the tested profiles. The IFS series achieves a balance of effectiveness and efficiency. (C) 2016 Elsevier Ltd. All rights reserved.
机译:船舵的轮廓会影响其产生的力,进而会影响船的操纵性能。因此,应考虑轮廓来计算舵力和力矩。代替对舵法向力系数的经验估计,本文采用RANS方法确定各种剖面的水动力特性,即升力和阻力系数。 RANS方法已通过经典的NACA 0012轮廓进行了验证,并已应用于NACA系列,楔尾系列和IFS系列中的9个轮廓。此外,针对螺旋桨滑流和方向舵纵横比的影响,对2D露天RANS结果进行了校正。提出了用于测试轮廓的法向力系数的新回归公式。然后将这些公式集成到标准MMG模型中。以KVLCC2型油轮为参考船,该机动模型已通过MARIN执行的自由运行测试进行了验证。最后,通过转向和曲折操纵来量化具有各种舵轮廓的参考船的操纵性能。仿真结果证实,在测试剖面中,楔尾系列最有效(最大操纵力),而NACA系列最有效(最大升阻比)。 IFS系列实现了有效性和效率之间的平衡。 (C)2016 Elsevier Ltd.保留所有权利。

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