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Validation of CFD simulations of the flow around a full-scale rowing blade with realistic kinematics

机译:用逼真的运动学验证全尺寸划船桨叶周围水流的CFD模拟

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摘要

This article deals with the validation of the modelling and numerical simulation of a rowing stroke, by means of CFD. Simplified but realistic strokes were performed in a towing tank with a rotating arm and a real flexible oar. Those laboratory conditions are better controlled than those of in situ trials. An FSI procedure is developed to take into account the oar bending, which is essential in the physics of this flow. The results show that this numerical framework is able to reproduce qualitatively the real flow including the breaking of the free surface around the blade and the transport of the air cavity behind it. The profiles of forces are well reproduced, with propulsive forces overestimated by 5-12% for their maxima. The study also focuses on the computation of the uncertainties. It is highlighted that, even for this well-controlled experimental equipment, the uncertainties on the quantities of interest are of about 11%. In other words, the experimental uncertainty covers the numerical errors. So, this numerical modelling is validated and can be used for design and optimisation of blades and oars, or to contribute to the better understanding of the boat-oar-rower system and its dynamics.
机译:本文通过CFD验证了划船的建模和数值模拟。在带有旋转臂和真正的柔性桨的拖船上进行了简化但逼真的冲程。与现场试验相比,这些实验室条件得到了更好的控制。开发FSI程序时要考虑到桨弯曲,这对于这种流动的物理性质至关重要。结果表明,该数值框架能够定性地再现真实的流动,包括叶片周围自由表面的破坏以及叶片后面的气腔的运输。力的轮廓被很好地再现,推进力的最大值被高估了5-12%。该研究还着重于不确定性的计算。需要强调的是,即使对于这种控制良好的实验设备,感兴趣量的不确定性也约为11%。换句话说,实验不确定性涵盖了数值误差。因此,该数值模型得到了验证,可用于叶片和桨的设计和优化,或者有助于更好地理解船桨系统及其动力学。

著录项

  • 来源
    《Journal of marine science and technology》 |2019年第4期|1105-1118|共14页
  • 作者

  • 作者单位

    Cent Nantes LHEEA Lab UMR CNRS 6598 1 Rue Noe F-44321 Nantes France;

    Cent Nantes LHEEA Lab UMR CNRS 6598 1 Rue Noe F-44321 Nantes France|CREPS Pays Loire Pl Gabriel Trarieux CS 21925 F-44319 Nantes France;

  • 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

    Computational fluid dynamics; Fluid-structure interaction; Rowing; Validation;

    机译:计算流体动力学;流固耦合划船;验证方式;

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