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Prediction of the maneuverability of a large container ship with twin propellers and twin rudders

机译:带有双螺旋桨和双舵的大型集装箱船的可操纵性预测

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The maneuvering characteristics of a large container ship with twin propellers and twin rudders were investigated using the horizontal planar motion mechanism (HPMM) test and computer simulation. A mathematical model for maneuvering motion with four degrees of freedom (DOF) for twin-propeller and twin-rudder systems was developed and included the effects of roll motion. To obtain the roll-coupling hydrodynamic coefficients of a container ship, a four-DOF HPMM system having a roll motion mechanism and a roll moment measurement system was used. At the full load condition, HPMM tests were carried out for two different 12000-TEU container ship models, one with twin propellers and the other with a single propeller. Using the hydrodynamic coefficients obtained from the tests, computer simulations were carried out. Simulation results for the container ship with twin propellers and twin rudders were compared with the results for the container ship with a single propeller and single rudder.
机译:利用水平平面运动机构(HPMM)测试和计算机仿真研究了具有双螺旋桨和双舵的大型集装箱船的操纵特性。建立了用于双螺旋桨和双舵系统的具有四个自由度(DOF)的机动运动的数学模型,该模型包括侧倾运动的影响。为了获得集装箱船的侧倾耦合流体力学系数,使用了具有侧倾运动机构和侧倾力矩测量系统的四自由度HPMM系统。在满载条件下,对两种不同的12000-TEU集装箱船模型进行了HPMM测试,一种模型使用双螺旋桨,另一种模型使用单螺旋桨。使用从测试中获得的流体动力学系数,进行了计算机模拟。将具有双螺旋桨和双舵的集装箱船的仿真结果与具有单螺旋桨和单舵的集装箱船的仿真结果进行了比较。

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