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EXPERIMENTAL INVESTIGATION OF ASYMMETRICAL PROPELLER BEHAVIOUR OF TWIN SCREW SHIPS DURING MANOEUVRES

机译:操纵期间双螺钉船舶不对称推进器行为的实验研究

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Twin screw ships may experience considerably asymmetrical propeller functioning during manoeuvres. This phenomenon may result in large power fluctuations during tight manoeuvres, with increases of shaft torque up to and over 100% of the steady values in straight course and considerable unbalances. A joint research project supported by Italian Navy has been set up in order to deeply investigate the phenomenon, potentially dangerous for ships propulsion systems with coupled shaft lines, by means of large scale model testing and related numerical simulations. In the present work, the extensive experimental campaign results on a free running model of a twin-screw ship are presented, allowing to obtain a deeper insight of the problem. In particular, tests have been carried out simulating different simplified control schemes, starting from the most common constant rate of revolution tests and including different control strategies (constant torque and power). Usual standard manoeuvres (turning circle, zigzag and spiral) have been carried out, providing results for asymmetrical shaft and ship manoeuvrability behaviour. Results from the present analysis, together with the previously presented results, allow to obtain the complete model for the time domain simulation of asymmetrical shaft functioning.
机译:双螺钉船舶可能在操纵期间经历相当多的不对称推进器。这种现象可能导致在狭窄的操纵期间具有大的功率波动,轴扭矩增加到直线过程中稳定值的增加和超过100%的稳定值和相当大的不平衡。已经建立了意大利海军支持的联合研究项目,以便深入研究船舶推进系统的现象,借助于大规模的模型测试和相关的数值模拟。在目前的工作中,提供了广泛的实验活动,并提出了一个双螺钉船的自由运行模型,允许获得对问题的更深层次。特别地,已经开始模拟不同的简化控制方案,从最常见的旋转测试率和包括不同的控制策略(恒扭矩和功率)开始。通常进行了通常的标准操作(转动圈,锯齿形和螺旋),为不对称轴和船舶机动性行为提供结果。本谱结果与先前呈现的结果一起,允许获得不对称轴功能的时域模拟的完整模型。

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