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Simplified method of torsional vibration calculation of marine power transmission system

机译:船舶传动系统扭转振动的简化计算方法

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The paper presents two estimation methods to calculate the natural torsional vibration mode of marine power transmission system. Additionally, the method of forced vibration analysis (torsional stress level amplitude estimation) is discussed. A typical propulsion system of merchant ship is made up of slow speed main engine connected directly to the propeller by a relatively short shaft line. All classification societies require calculation of the propulsion system operating parameters, but they have no simplified formulas. Torsional vibrations of the marine power transmission system are usually most dangerous for the shaft line and the crankshaft. Numerical algorithms based mostly on Finite Element Method (FEM) are unobtainable and not easy to use by the ship crew and unspecialized engineers. Estimation method of the torsional vibration of the system was being investigated by the authors. Modelling method of more difficult propulsion system parameters like propeller added water polar moment of inertia was presented. Short description of the advantages and disadvantages of the undercritical and overcritical propulsion system was introduced. A discussion about the calculation results was included in the final part of the paper. The presented calculation method was verified by comparison with the detailed FEM calculation and measurements on real ships.
机译:提出了两种估算船舶动力传输系统固有扭转振动模式的方法。此外,讨论了强制振动分析(扭转应力水平幅度估计)的方法。商业船的典型推进系统由通过相对较短的轴线直接连接到螺旋桨的低速主机组成。所有的船级社都需要计算推进系统的运行参数,但没有简化的公式。船用动力传输系统的扭转振动通常对轴和曲轴最危险。主要基于有限元方法(FEM)的数值算法难以获得,而且船员和非专业工程师也不容易使用。作者正在研究系统扭转振动的估计方法。提出了螺旋桨加水极惯性矩等较难的推进系统参数建模方法。简要介绍了欠临界和超临界推进系统的优缺点。本文最后部分对计算结果进行了讨论。通过与实际船舶上详细的有限元计算和测量结果进行比较,验证了所提出的计算方法。

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