首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >MODEL TEST INVESTIGATION OF THE INFLUENCE OF DAMPING ON THE VORTEX INDUCED MOTIONS OF DEEP DRAFT SEMI-SUBMERSIBLES USING A NOVEL ACTIVE DAMPING DEVICE
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MODEL TEST INVESTIGATION OF THE INFLUENCE OF DAMPING ON THE VORTEX INDUCED MOTIONS OF DEEP DRAFT SEMI-SUBMERSIBLES USING A NOVEL ACTIVE DAMPING DEVICE

机译:利用新型主动阻尼装置进行阻尼对深半半深涡旋诱导运动的影响的模型试验研究

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Vortex Induced Motions (VIM) of semi-submersibles occur when the vortex shedding frequency is close to the natural frequency of the semi-submersible in the direction transverse to the current. Recent studies suggest that the magnitude of VIM predicted during model tests is higher than that observed in the field. Among others, the damping effect provided by the risers and mooring lines is regarded as one of the reasons for this difference. In this paper the setup and results are presented for model tests to investigate the influence of damping on VIM. For these model tests an active damping system was developed, which introduces an actively controlled external force mimicking a damping force. This applied damping force is based on the floater sway motion and sway velocity. With this system the introduced damping level can easily be controlled and verified without changing the stiffness of the system. In this paper the advantages and disadvantages of this active damping system are presented. The VIM tests were conducted for two semi-submersibles: a paired-column semi with eight columns and a four column semi. Reduced velocities ranged from Ur=3 to Ur=10 and different levels of additional linear damping were applied to the floaters in the direction transverse to the current direction. Damping was found to reduce the VIM motions significantly: reductions of more than 60% were observed in the nominal A/D response for 25% equivalent linear damping. This indicates that damping has a significant effect on the global VIM response and thus should be considered in the design phase of the risers and mooring lines of the semi-submersibles. To improve the understanding of the driving mechanism of VIM and also to provide validation data for CFD analyses, forces were measured on each column of the four column semi. Column force measurements indicate that for the four column semi for 45 degrees heading, i.e. the heading with largest VIM responses, the upstream, the portside and the starboard side columns are exciting the VIM motions. For 22.5 degrees, the downstream, the portside and the starboard side columns excite the VIM motions. For all tested headings the pontoon always damps the VIM response.
机译:当涡旋脱落频率在垂直于电流的方向上接近半潜器的固有频率时,就会发生半潜器的涡激运动(VIM)。最近的研究表明,在模型测试期间预测的VIM幅度要高于现场观察到的幅度。其中,由立管和系泊缆绳提供的阻尼作用被认为是造成这种差异的原因之一。在本文中,提出了用于模型测试的设置和结果,以研究阻尼对VIM的影响。对于这些模型测试,开发了主动阻尼系统,该系统引入了模仿阻尼力的主动控制外力。施加的阻尼力基于浮子的摇摆运动和摇摆速度。使用该系统,可以在不改变系统刚度的情况下轻松控制和验证引入的阻尼水平。本文介绍了这种主动阻尼系统的优缺点。 VIM测试是针对两个半潜式潜水器进行的:具有八列的成对列半列和具有四列的半列。降低的速度在Ur = 3到Ur = 10的范围内,并且在垂直于当前方向的方向上对浮动块施加了不同级别的附加线性阻尼。发现阻尼可以显着降低VIM运动:当等效线性阻尼为25%时,标称A / D响应降低了60%以上。这表明阻尼对整体VIM响应有重要影响,因此应在半潜式潜水器的立管和系泊绳的设计阶段进行考虑。为了增进对VIM驱动机制的理解,并为CFD分析提供验证数据,在四列半柱的每一列上测量了力。柱力测量结果表明,对于45度航向(即具有最大VIM响应的航向)的四柱半船,上游,左舷和右舷侧柱都激发了VIM运动。对于22.5度,下游,左舷和右舷侧柱激发VIM运动。对于所有测试的航向,浮桥始终会抑制VIM响应。

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