船舶 ›› 2026, Vol. 37 ›› Issue (01): 90-100.DOI: 10.19423/j.cnki.31-1561/u.2025.004

• 系统与设备 • 上一篇    下一篇

基于仿真的柴-柴联合推进系统加载策略优化

叶正华, 陈宾宾, 魏小栋, 钟涛   

  1. 中国船舶及海洋工程设计研究院 上海 200011
  • 收稿日期:2024-12-23 修回日期:2025-03-15 出版日期:2026-02-25 发布日期:2026-03-04
  • 作者简介:叶正华(1983—),男,本科,研究员。研究方向:船舶轮机设计。陈宾宾(1997—),男,硕士,工程师。研究方向:船舶轮机设计。魏小栋(1991—),男,硕士,高级工程师。研究方向:船舶轮机设计。钟 涛(1976—),男,硕士,研究员。研究方向:船舶轮机设计。

Optimization of Loading Strategy for Combined Diesel and Diesel (CODAD) System Using Simulation

YE Zhenghua, CHEN Binbin, WEI Xiaodong, ZHONG Tao   

  1. Marine Design & Research Institute of China, Shanghai 200011, China
  • Received:2024-12-23 Revised:2025-03-15 Online:2026-02-25 Published:2026-03-04

摘要: 为合理制定机-桨联控曲线,促进柴-柴联合推进系统加载及船舶快速起动,该文建立了柴油机、齿轮箱、轴系、螺旋桨等设备的数学模型,并通过分析原应急加载策略存在的问题,提出一种优先提升转速再变速率加螺距的优化加载策略。柴-柴联合推进系统动态仿真结果表明:该优化策略能在主机功率不超负荷限制的同时,显著促进车令加载及船舶快速起动,使航速稳定时间较3种代表性策略分别缩短了76.6 s、37.6 s、23.8 s,车令加载时间较3种代表性策略分别缩短了78.3 s、35.4 s、24.7 s。仿真结果还揭示了大型船舶应急加载过程中主机功率先增后降、最后随航速趋于稳定的变化规律。该项研究可为超负荷保护策略的制定以及机-桨的匹配设计提供指导。

关键词: 柴-柴联合推进, 加载策略, 大型船舶, 调距桨

Abstract: To facilitate the rational development of engine-propeller integrated control curves and improve the loading response and rapid starting of vessels equipped with a Combined Diesel And Diesel (CODAD) system, mathematical models for the diesel engine, gearbox, shafting, and propeller were established. By analyzing shortcomings of the original emergency loading strategy, an optimized strategy was proposed that prioritizes increasing the rotational speed before adjusting the rate of pitch change. Dynamic simulation results of the CODAD system demonstrate that the optimized strategy ensures that the engine power remains within the overload limit while significantly accelerates the response to engine commands and vessel starting. Compared with three representative strategies, the speed stabilization time under optimized strategy is reduced by 76.6 s, 37.6 s, and 23.8 s, respectively, and the command loading time is shortened by 78.3 s, 35.4 s, and 24.7 s, correspondingly. The simulations also reveal the power variation pattern during emergency loading of large vessels: the main engine power initially increases, then decreases, and finally stabilizes as the vessel's speed steadies. This study provides valuable insights for formulating overload protection strategies and optimizing engine-propeller matching design.

Key words: combined diesel and diesel(CODAD), loading strategy, large vessel, controllable-pitch propeller

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