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Measurement of Hydrodynamic Coefficients on a Planing Hull Using Forced Roll Oscillations

机译:使用强制横摇振荡测量平面船体上的水动力系数

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摘要

For planing hulls, dynamic lift reduces the submergence of the hull, allowing small motions to result in large changes in hydrodynamic forces and moments. This article explores various modeling assumptions associated with transverse plane dynamics in roll and the hydrodynamic forces in the planing regime. The significance of nonlinearities in the roll hydrodynamic forces for planing hulls was investigated with regard to roll amplitude, model speed, model displacement, and roll oscillation frequency. A wooden 20° deadrise prismatic planing hull was tested at steady roll angles and in dynamic roll at various roll amplitudes and frequencies. Two displacements, three model speeds, three roll amplitudes, and four roll oscillation frequencies were tested. The measured wetted lengths, roll-restoring coefficient, roll-added inertia coefficient, and roll-damping coefficient are presented. The roll-restoring moment is found to be nonlinear with roll amplitude, the added inertia coefficient shows some dependence on model speed, and the roll-damping coefficient shows some amplitude dependence.
机译:对于滑行船体,动态升力可减少船体的浸没,允许较小的运动导致流体动力和力矩的较大变化。本文探讨了与横滚中的横向平面动力学和平面状态中的水动力有关的各种建模假设。从侧倾幅度,模型速度,模型位移和侧倾振荡频率等方面,研究了平面船体侧倾流体动力中非线性的重要性。在稳定的侧倾角和动态侧倾下,以不同的侧倾​​幅度和频率测试了20°木制的无死角棱柱形平面船体。测试了两个位移,三个模型速度,三个侧倾幅度和四个侧倾振荡频率。给出了测得的湿长度,辊恢复系数,辊附加惯性系数和辊阻尼系数。发现侧倾恢复力矩与侧倾振幅呈非线性关系,增加的惯性系数对模型速度有一定的依赖性,而侧倾阻尼系数对模型速度有一定的依赖性。

著录项

  • 来源
    《Journal of Ship Research》 |2013年第2期|112-124|共13页
  • 作者单位

    Department of Naval Architecture and Ocean Engineering, United States Naval Academy, Annapolis, Maryland;

    Department of Mechanical Engineering, The Catholic University of America, Washington, DC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydrodynamics; model testing; planing hulls;

    机译:流体力学模型测试;滑行船体;

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