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Validation of analytical methods for the estimation of the torsional vibrations of ship power transmission systems

机译:验证船舶电力传输系统扭转振动估计的分析方法

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摘要

The propulsion system is one of the main sources of ship vibrations. A typical propulsion system consists of an engine, a shaft line and a propeller. In order to estimate the vibration levels of a ship propulsion system, analytical methods are still relevant in the preliminary ship design stage. In this paper, three analytical procedures for the vibration analysis of a ship shafting system are presented. The shafting system dynamic behaviour is simulated by reducing the problem to two-, three-, and multi-mass models. Propeller and engine damping is taken into account. Differential equations of motion for the two- and the three-mass models are solved analytically. In the case of the multi-mass model, Rayleigh's quotient and the Galerkin method are used for free and forced vibration analysis, respectively. Since the first natural mode of the shaft line is dominant, the problem can be reduced to a single d.o.f. in the modal space and solved analytically. For all three models, relatively simple formulae for the engine torque transfer factor to the intermediate shaft are derived. The presented procedures are validated by a comparison with measurements. The comparison indicates the high accuracy of the proposed procedures.
机译:推进系统是船舶振动的主要来源之一。典型的推进系统由发动机,轴线和螺旋桨组成。为了估计船舶推进系统的振动水平,分析方法在初步船舶设计阶段仍然相关。本文介绍了船舶轴系系统的振动分析的三种分析程序。通过将问题减少到两种,三大和多质量模型来模拟轴系动态行为。考虑到螺旋桨和发动机阻尼。两个 - 和三种模型的差分方程在分析上解决。在多质量模型的情况下,Rayleigh的商品和Galerkin方法分别用于自由和强制振动分析。由于轴线的第一自然模式是显性的,因此该问题可以减少到单个D.O.F.在模态空间中并在分析上解决。对于所有三种型号,导出用于中间轴的发动机扭矩传递因子的相对简单的公式。通过与测量的比较验证所提出的程序。比较表明所提出的程序的高精度。

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