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Hydrodynamic performance of a Magnus anti-rolling device at zero and low ship speeds

机译:零和低船舶速度下马格努斯防轧装置的流体动力学性能

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摘要

Excellent seakeeping performance is the basis of safe ship operation. An anti-rolling device employing swinging rotating cylinders based on the Magnus effect can provide anti-rolling measures at any ship speed. In this study, the operating principle of a Magnus anti-rolling device was examined by studying its hydrodynamic performance using large eddy simulation method. A dimensionless parameter-the rotation to swing ratio (i.e., the ratio of the rotational speed to the swing speed of the cylinder-was proposed for use in the hydrodynamic analysis. The changes in lift-drag characteristics and wake-flow field of the Magnus anti-rolling device were observed at zero and low ship speeds according to the swing angle, angular velocity, and rotation to swing ratio. The influence of the relative incoming flow velocity on the hydrodynamic characteristics of the Magnus anti-rolling device, when swinging upstream and downstream, was also studied at a low ship speed. The results show that an optimal rotation to swing ratio can be obtained at zero speed, and that the differential swing method can provide a large and consistent lift at low speeds. This analysis of the hydrodynamic characteristics of the Magnus anti-rolling device contributes to the study of ship seakeeping strategies.
机译:优秀的海保业绩是安全船舶运行的基础。采用基于MAGNUS效果的摆动旋转圆柱体的防滚动装置可以在任何船舶速度下提供抗轧制措施。在该研究中,通过使用大涡模拟方法研究其流体动力学性能来检查马格努球抗滚动装置的操作原理。无量纲参数 - 旋转以摆动比(即,旋转速度与气缸的摆动的比率 - 是用于流体动力学分析。升力 - 牵伸特性的变化和Magnus的唤醒流场根据摆动角度,角速度和旋转以摆动比以零和低船速观察抗滚动装置。相对进入的流速对上游摆动时的马格努球抗滚动装置的流体动力学特性的影响还在下游,也以低船速度研究。结果表明,可以以零速度获得与摆动比的最佳旋转,并且差动摆动方法可以以低速提供大而一致的升力。这个分析MAGNUS防轧装置的流体动力学特性有助于研究船舶海保策略。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1409-1409|共1页
  • 作者

    J.- F. Lin; Y. Han; Y.- M. Su;

  • 作者单位

    College of Shipbuilding Engineering Harbin Engineering University Harbin 150001 China;

    College of Shipbuilding Engineering Harbin Engineering University Harbin 150001 China;

    College of Shipbuilding Engineering Harbin Engineering University Harbin 150001 China;

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  • 原文格式 PDF
  • 正文语种 eng
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