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Investigation of Asymmetrical Shaft Power Increase During Ship Maneuvers by Means of Simulation Techniques

机译:通过仿真技术调查船舶机动期间的不对称轴功率增加

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Marine propulsion plants can experience large power fluctuations during tight maneuvers, with increases of shaft torque up to and over 100% of the steady values in straight course and considerable asymmetry between internal and external shafts during turning circle. This phenomenon (studied in Viviani et al 2007a and 2007b), can be of particular interest for twin screw ships propulsion systems with coupled shaftlines, in which asymmetrical loads can represent a challenge for the whole propulsion system (e.g. unique reduction gear, shaftlines, automation). Ajoint research 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, preliminary simulation results with different simplified automation systems and with an automation system more similar to the real one are reported, allowing to get a better insight into this complex problem.
机译:船舶推进器可以在紧张的操纵期间体验大的功率波动,轴扭矩增加到直线过程中的稳定值超过100%,在转动圈期间内部和外部轴之间的相当大的不对称性。这种现象(在Viviani等人2007a和2007b中研究),对双螺钉船舶推进系统具有特别令人口感兴趣的耦合缝合线,其中不对称负荷可以代表整个推进系统的挑战(例如,独特的减速齿轮,Shaftlines,自动化)。已经建立了Ajoint研究,以便通过大规模的模型测试和相关的数值模拟来深入研究现象。在本作本作中,报告了初步仿真结果,具有不同简化的自动化系统和与真实的自动化系统更类似于真实的系统,允许更好地深入了解这种复杂问题。

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