[1] 欧阳武,金勇,张聪,等. 船舶推进轴系振动及其控制 [M]. 北京:科学出版社,2024. [2] Warikoo R,Haddara M.Analysis of propeller shaft transverse vibrations[J]. Marine Structures,1992,5: 255-279. [3] 周瑞平,徐立华. 船舶推进轴系校中:CB/Z 338-2005[S]. 2005. [4] Kim Y G,Kim U K.Design and analysis of the propulsion shafting system in a ship with single stern tube bearing[J]. Journal of Marine Science and Technology,2020,25: 536-548. [5] LeCun Y,Bengio Y,Hinton G. Deep learning[J]. Nature,2015,521: 436-444. [6] Zhou F,Wang S.A hybrid framework integrating end-to-end deep learning with Bayesian inference for maritime navigation risk prediction[J]. Journal of Marine Science and Engineering,2025,13: 1925. [7] Cepowski T.The use of a set of artificial neural networks to predict added resistance in head waves at the parametric ship design stage[J]. Ocean Engineering,2023,281: 114744. [8] Grabowska K,Szczuko P.Ship resistance prediction with artificial neural networks[C]//2015 Signal Processing: Algorithms,Architectures,Arrangements,and Applications (SPA),2015: 168-173. [9] Yang J,Oh J,Kim B J,et al.Digital twin implementation for three-dimensional rotordynamic response via physics-informed LSTM neural networks[J]. Journal of Vibration and Acoustics,2024,146(2):021003. [10] 周凌波,段勇,孙玉东,等. 水面船舶推进轴系回旋振动研究综述[J]. 中国造船,2017,58(3): 233-244. [11] 古铮,刘金林,房诗雨.轴段空心度对舰船复杂推进轴系回旋振动特性的影响研究[J].船舶力学,2025,29(2):312-320. [12] 冯树才,陈彦臻,曲东旭,等. 船舶推进轴系回旋振动研究综述[J]. 船舶工程,2024,46(3):31-47. [13] Huang Q,Yan X,Wang Y,et al.Numerical and experimental analysis of coupled transverse and longitudinal vibration of a marine propulsion shaft[J]. Journal of Mechanical Science and Technology,2016,30(12): 5405-5412. [14] 赖国军,刘金林,雷俊松,等.船舶推进轴系方案设计的关键技术研究进展[J].中国舰船研究,2019,14(5):10-21. [15] 王斌,邱跃统,刘媛慧,等. 基于有限元法的某高速船推进轴系回旋振动计算分析[C]// 第十九届船舶水下噪声学术讨论会论文集,2023: 219-224. |