首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >INFLUENCE OF THE DRAFT CONDITION ON VORTEX-INDUCED MOTIONS OF A SEMI-SUBMERSIBLE PLATFORM WITH FOUR SQUARE COLUMNS
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INFLUENCE OF THE DRAFT CONDITION ON VORTEX-INDUCED MOTIONS OF A SEMI-SUBMERSIBLE PLATFORM WITH FOUR SQUARE COLUMNS

机译:条件对四列半潜式平台的涡激运动的影响

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The vortex-induced motions (VIM) phenomenon of semi-submersibles has drawn increasing attention with the development (mainly increase of column size) of new semi-submersibles. Due to the elongated submerged columns and the enlarged projected area to current, deep-draft semi-submersible platforms are susceptible to higher in-line drag forces and transverse vortex-induced lift forces, resulting in considerable horizontal motions in a current environment. In order to check the influence of draft conditions on VIM of the semi-submersible platform with four square columns, experimental investigations with five draft ratios varying from 0.87 to 1.90 were carried out in a towing tank. The 6-degree-of-freedom (6-DOF) motions of the model were recorded by the motion acquisition system, in synchronisation with restoring forces provided by four load cells, one for each horizontal mooring spring. This paper discusses the dynamic behavior of a semi-submersible platform in five different draft conditions, including coupled motions at the water surface plane, drag and lift forces, and spectral analysis. It is shown that the largest transverse amplitudes are around 75% of the column width in the range of 6.0 ≤U_r≤ 8.0 for the deep-draft semi-submersible (H/L=1.90). With 50% of the immerged column height of the deep-draft model, a 30% decrease in the transverse motion amplitude can be seen. Furthermore, the effects of the draft condition on yaw responses and current loads are also addressed.
机译:随着新型半潜式潜水器的发展(主要是塔体尺寸的增加),半潜式潜水器的涡激运动(VIM)现象引起了越来越多的关注。由于细长的水下圆柱和相对于当前的扩大的投影面积,深通风的半潜式平台容易受到较高的直列阻力和横向涡流引起的升力的影响,从而在当前环境中产生相当大的水平运动。为了检查吃水条件对具有四个方柱的半潜式平台的VIM的影响,在拖曳罐中进行了五个吃水比从0.87到1.90的实验研究。运动采集系统记录了模型的6自由度(6-DOF)运动,并与四个称重传感器提供的恢复力同步,每个水平系泊弹簧一个。本文讨论了半潜式平台在五种不同吃水条件下的动力学行为,包括水面平面上的耦合运动,阻力和升力以及频谱分析。结果表明,对于深吸式半潜式潜水器(H / L = 1.90),最大横向振幅约为柱宽的75%,范围为6.0≤U_r≤8.0。在深草案模型的浸入式柱高的50%的情况下,可以看到横向运动幅度降低了30%。此外,还讨论了吃水状况对偏航响应和当前负载的影响。

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