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Research on shafting alignment considering ship hull deformations

机译:考虑船体变形的轴系对中研究

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Ship hull deformation is one of the most significant influences on propulsion shafting alignment. Based on the calculation fundamentals of ship hull deformations, a new method of shafting alignment considering ship hull deformations is proposed in this paper. Ship loadings, wave loads and environment temperature differences in some extreme conditions, as well as elastic constraints, are simulated and applied to the finite element model of 76,000 DWT product oil tanker, so that ship hull deformations can be solved. Then, the deformations of the double bottom are converted to bearing offsets, which behave as boundary constraints for shafting alignment calculations. Taking the condition of light ship in calm water as a reference, the impact of hull deformations on shafting alignment is analyzed and optimized shafting alignment considering ship hull deformations is realized.
机译:船体变形是对推进轴系对准的最重要影响之一。基于船体变形的计算基础,提出了一种考虑船体变形的轴系校中新方法。模拟了某些极端条件下的船舶载荷,波浪载荷和环境温度差异以及弹性约束,并将其应用于76,000 DWT产品油轮的有限元模型中,从而可以解决船体变形。然后,将双层底的变形转换为轴承偏移量,将其用作轴心对齐计算的边界约束。以平静水中的轻型船为例,分析了船体变形对轴系对中的影响,实现了考虑船体变形的轴系对中优化。

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