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Propulsion performance of large-scale ship model in real sea environment

机译:大型船舶型号在真正的海洋环境中的推进性能

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摘要

In recent years, under the advocacy of ITTC, large-scale model test technology has garnered significant attention from researchers all over the world. Increasingly sophisticated test equipment and a large amount of experimental experience have promoted the development and improvement of test technology. Here, a 25 m long bulk carrier model was built as the research object. The self-propulsion test about propulsion performance in real sea environment was conducted in the coastal waters of northern China. The manoeuvrability test proved that the designed ship model integrated system was reliable. The effects of complex wake field environments on the propulsion performance were studied using the equal thrust and equal torque methods. The results indicated that the complex wake field environment causes the torque to increase by 2%-11%, and the thrust loss ranges from 3 to 15%. When the propeller was operated at a high rotating speed, the torque and thrust in the oblique wave tended to decrease by 1-3% compared to the propulsion performance in the head wave. In addition, the more severe sea state caused the propeller torque to decrease and the thrust to increase.
机译:近年来,在ITTC的宣传下,大型模型测试技术已经从世界各地的研究人员获得了重大关注。越来越复杂的测试设备和大量的实验经验促进了测试技术的开发和改进。这里,建造了25米长的散装载体模型作为研究对象。关于真正的海洋环境中推进性能的自我推进试验在中国北方沿海水域进行。机动性测试证明,设计的船舶模型集成系统可靠。研究了复杂的唤醒现场环境对采用等推力和等于扭矩方法的推进性能的影响。结果表明,复杂的唤醒场环境导致扭矩增加2%-11%,推力损耗范围为3%至15%。当螺旋桨以高旋转速度操作时,与头部波浪中的推进性能相比,倾斜波的扭矩和推力趋于减小1-3%。此外,较严重的海水导致螺旋桨扭矩降低和增​​加的推力。

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