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Analysis of twin screw shipsu27 asymmetric propeller behaviour by means of free running model tests

机译:自由运行模型试验分析双螺杆船不对称螺旋桨行为

摘要

Twin screw ships may experience considerably asymmetric 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; this, in its turn, may be potentially dangerous, especially in case of particularly complex propulsion plant configurations, such as those with coupled shaftlines. A joint research project supported by the Italian Navy has been set up in order to deeply investigate the phenomenon, 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 asymmetric shaft functioning and ship manoeuvrability behaviour. Results from the present analysis allow to obtain the complete model for the time domain simulation of asymmetric shaft functioning.
机译:双螺杆船在操纵过程中可能会经历相当不对称的螺旋桨功能。这种现象可能会导致在严密操作过程中出现较大的功率波动,使轴转矩在直线运动中的增加幅度达到或超过稳定值的100%,并且出现严重的不平衡。这反过来可能具有潜在的危险,特别是在特别复杂的推进装置配置(例如带有耦合轴系的装置)的情况下。意大利海军已经建立了一个联合研究项目,以便通过大规模模型测试和相关的数值模拟对这一现象进行深入研究。在当前的工作中,提出了在双螺杆船的自由运行模型上进行的广泛实验活动的结果,从而可以更深入地了解问题。特别地,已经从最常见的恒定转速测试开始,并模拟了不同的控制策略(恒定转矩和功率),以模拟不同的简化控制方案进行了测试。已经执行了通常的标准操纵(转弯圆,锯齿形和螺旋形),从而为不对称的轴功能和船舶操纵性行为提供了结果。当前分析的结果允许获得用于不对称轴功能的时域仿真的完整模型。

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