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通过数值模拟和模型试验方法对一新型的Spar平台——多立柱式Spar平台的涡激运动特性进行研究。平台硬舱为四根圆柱方形阵列布置加方形中心井的形式,各柱间会产生复杂的相互干扰,不同于常规的单立柱Spar平台或半潜式平台,因此对其开展相应的涡激运动研究具有重要意义。研究主要关注的是不同来流角、不同流速下平台的涡激运动特性。通过涡激运动时的横荡运动、水平面内运动轨迹、首摇运动和水动力系数及绕流流场的分析,可得:在折合速度约为6~8范围内,平台横荡运动存在明显的“锁定”现象(0°来流角无侧板时“锁定”范围约为Ur=7~10)。在0°来流角下较高流速时,减涡侧板对涡激运动有明显的抑制效果。平台的运动轨迹近似与平台硬舱截面的对角线平行(0°来流角除外),这不同于常规的单立柱Spar平台。此外,试验中还观察到较明显的首摇运动。涡激运动时各柱间绕流存在复杂的相互干扰,而在柱后形成共同的涡结构。  相似文献   
2.
当流体流经单柱式结构物时,由于流体黏性和逆压梯度的存在,会产生非定常的升力、阻力和涡旋脱落,即涡激运动现象,对一座Truss Spar平台的硬舱部分附加长度为1.0D(D为硬舱直径)的刚性来流侧分隔板,基于开源平台OpenFOAM,采用基于剪切应力运输的延迟分离涡模拟(SST-DDES)方法,在不可压缩黏性流场中,对其进行三维数值模拟,以研究在不同流速下,来流侧分隔板对Spar平台涡激运动特性和运动响应的影响。结果表明:在较高流速下,横荡周期减小22.21%,横荡最大幅值减小81.3%。说明在较高流速下,附加分隔板有助于减少Spar平台的运动响应幅值。  相似文献   
3.
The Joint Committee for Guides in Metrology (JCGM) has introduced a revised third edition of the International Vocabulary of Metrology – basic and general concepts and associated terms ( VIM: 2008 ) that replaces the second edition which was published in 1993. This article includes a table containing the terms and definitions that are most relevant to geoanalysis, designed to extend awareness and to promote best practice in the use of this terminology. Comparison is made, where appropriate, with definitions from the earlier 1993 definitions, to demonstrate the way in which thinking in metrological concepts has evolved over this time period.  相似文献   
4.
An experimental study on vortex-induced motions (VIM) of a deep-draft semi-submersible (DDS) was carried out in a towing tank, with the aim to investigate the VIM effects on the overall hydrodynamics of the structure. In order to study the fluid physics associated with VIM of the DDS, a comprehensive numerical simulation was conducted to examine the characteristics of vortex shedding processes and their interactions due to multiple cylindrical columns. The experimental measurements were obtained for horizontal plane motions including transverse, in-line and yaw motions as well as drag and lift forces on the structure. Spectral analysis was further carried out based on the recorded force time history. These data were subsequently used to validate the numerical model. Detailed numerical results on the vortex flow characteristics revealed that during the “lock-in”, the vortex shedding processes of the upstream columns enhance the vortex shedding processes of the downstream columns leading to the rapid increase of the magnitude of VIM. In addition to the experimental measurements, for the two uniform flow incidences (0° and 45°) investigated, comprehensive numerical data of the parametric study on the VIM characteristics at a wide range of current strength will also serve as quality benchmarks for future study and provide guidance for practical design.  相似文献   
5.
A numerical simulation and an experimental study on vortex-induced motion (VIM) of a new type of deep draft multi-columns floating drilling production, storage and offloading (FDPSO) are presented in this paper. The main dimension, the special variable cross-section column and the cabin arrangement of the octagonal pontoon are introduced based on the result. The numerical simulation is adapted to study the effects of current incidence angles and reduced velocities on this platform''s sway motion response. The 300 m water depth equivalent truncated mooring system is adopted for the model tests. The model tests are carried out to check the reliability of numerical simulation. The results consist of surge, sway and yaw motions, as well as motion trajectories. The maximum sway amplitudes for different types of offshore platform is also studied. The main results show that the peak frequencies of sway motion under different current incidence angles and reduced velocities vary around the natural frequency. The analysis result of flow field indicates that the change of distribution of vortex in vertical presents significant influences on the VIM of platform. The trend of sway amplitude ratio curve of this new type FDPSO differs from the other types of platform. Under 45° current incidence angle, the sway amplitude of this new type of FDPSO is much smaller than those of other types of offshore platform at 4.4 ≤ Vr ≤ 8.9. The typical ‘8’ shape trajectory does not appear in the platform''s motion trajectories.  相似文献   
6.
基于ABAQUS/AQUA模块,当Spar平台发生涡激运动时,对与平台相连接的柔性立管进行时域动态响应分析,得到了不同折合速度下柔性立管的应力响应曲线.对立管触地区域和悬垂段进行了细化的分析,并利用S-N曲线和Miner线性累积损伤理论对平台涡激运动引起的柔性立管疲劳损伤进行了计算.研究结果表明:平台涡激运动对立管触地区域和悬垂段的影响较大,这两部分最容易在长时间的工作中产生疲劳损伤.特别是平台运动到近点时,立管触地区域受到的应力急剧增加,这个区域是立管工作的危险区域,应该特别注意.该研究结论可以作为立管结构设计和海底铺设时的参考,通过增加立管触地区域的结构强度和优化铺设方式,从而来提高立管的疲劳寿命和系统的安全性.  相似文献   
7.
高巍  王晋  董璐  闫琛  吕海宁 《海洋工程》2016,34(2):95-104
针对应用于中国南海的新型深水Spar钻井生产储卸油平台进行了涡激运动特性与影响的研究。对该平台进行涡激运动拖曳试验,根据规范和动力学分析得出平台的拖曳力系数和升力系数,通过比较南海流速分布情况与平台涡激运动与流速关系发现:该平台在一般海况下即可发生幅值为10 m左右的涡激运动;对平台进行水池模型试验,进一步验证涡激运动拖曳试验结果并分析平台运动性能,对平台受到的脉冲拖曳力和升力载荷进行了初步校验。通过模型试验对平台涡激运动特性有了初步认识,发现在百年一遇条件下,平台脉动拖曳力载荷与升力载荷比为1∶3;一年一遇条件下,平台脉动拖曳力载荷与升力载荷比为1∶1。根据试验结果对数值模型进行了修正并与试验值进行比较,比较结果表明经过修正后的计算结果与试验结果取得了良好的一致性。比较了全尺度下涡激运动对于平台系泊系统和平台水平位移的影响,结果表明:涡激运动的存在使得Inline方向系泊张力增加5%,并使得系泊缆受力分布产生变化,位移增加27%;Between line方向张力增加15%,位移增加2.5%。涡激运动对于平台极限张力以及极限漂移出现方向还有待进一步研究。涡激运动对于平台系泊系统疲劳寿命的影响还需进一步研究。  相似文献   
8.
A Deep Draft Semi-submersible (DDS) under certain flow conditions could be subjected to Vortex-Induced Motions (VIM), which significantly influences the loads on and life fatigue of the moorings and the risers. To investigate the VIM of a DDS with four rectangular section columns in waves coupled with a uniform current, a numerical study using the computational fluid dynamics (CFD) method was conducted. The issues of the VIM of multi-column floaters can be conveniently converted to the issues of oscillating cylinders in fluid cross flows. This paper looks into the CFD numerical simulation of infinite cylinders having rectangular sections in a two-dimensional sinusoidal time-dependent flow field coupled with a uniform current. The resulted hydrodynamic forces and motion responses in different oscillatory flows plus currents both aligned in the same direction for the incidence of 135° of the DDS relative to the flow are compared with the ones in current only cases. The results show that the VIM response of this geometric arrangement of a DDS with four rectangular columns in a current combined with oscillatory flows is more evident than that in the current only case. The oscillatory flows and waves have the significant influence on the VIM response, forces and trajectory, in-plane motions of the DDS.  相似文献   
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