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ANALYSIS OF TORSIONAL VIBRATION OF LARGE-SCALE SHIP PROPULSION SHAFTING

机译:大型船舶推进轴系扭转振动分析

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This paper is based on the multi-body dynamic coupling theory and finite element theory. A multi-body dynamic coupling model of the large-scale vessel is built and the torsion vibration characteristics of slow-speed ship propulsion shafting are analyzed. The measurements of shafting torsional vibration in the real ship are compared with the results from the simulation model. Then, the differences between measurements and simulation results are analyzed in multi-orders. The analysis result indicates that the simulation results are almost the same with measurements obtained from the real ship, which verify the correctness and feasibility of the model. At the same time, the influence of ship hull deformation on the torsion vibration of ship propulsion shafting is discussed by Adams/Vibration. The analysis shows that the ship hull deformation could cause the significant increase of torsional vibration of ship propulsion shafting.
机译:本文基于多体动力耦合理论和有限元理论。建立了大型船舶多体动力耦合模型,分析了慢速船推进轴系的扭转振动特性。将实际船舶中轴系扭转振动的测量结果与仿真模型的结果进行比较。然后,对测量结果和仿真结果之间的差异进行多阶分析。分析结果表明,仿真结果与实际船上的测量结果几乎相同,验证了该模型的正确性和可行性。同时,Adams / Vibration讨论了船体变形对船舶推进轴系扭转振动的影响。分析表明,船体变形可能引起船舶推进轴系扭转振动的显着增加。

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