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首页> 外文期刊>Oceanographic Literature Review >A practical technique for hydrodynamic coefficients modification in SHEAR7 for fatigue assessment of riser buoyancy modules under vortex-induced vibration
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A practical technique for hydrodynamic coefficients modification in SHEAR7 for fatigue assessment of riser buoyancy modules under vortex-induced vibration

机译:旋转振动下提升管浮力模块疲劳评估的剪静脉分析中的流体动力系数修饰的实用技术

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摘要

The hydrodynamic coefficients in semi-empirical tool are optimized for a riser attached with staggered buoyancy modules undergoing Vortex-Induced Vibration (VIV) based on the SHELL Oil Experiment. The existing prediction tools are based on data derived from experiments, number of assumptions from strip theory, energy balance between fluid and structure and use of lift coefficient databases. Current advancements in conducting and calculating VIV response from the experiments shows that these assumptions may be invalid. The major difference arises between experimental observations and theoretical estimations is from lift coefficient databases. The databases extracted under laboratory conditions have limited Reynolds number flow conditions and only cross-flow motions were considered. The extracted hydro-dynamic excitation coefficient database is posed to optimization problem, where the main objective is to minimize the prediction error of semi-empirical tools when compared with experimental results. We optimize the existing excitation coefficient database to improve the fatigue damage prediction of riser attached with staggered buoyancy modules. Application of modification factors and optimizing the hydrodynamic lift coefficients to the data from SHELL Exploration and Production Test provides the new optimized excitation coefficient datasets which reduce the error in the predicting the VIV response of the riser with staggered buoyancy modules.
机译:基于壳油实验,半实验工具中的流体动力系数针对附着的涡旋振动(VIV)的交错浮力模块进行了优化。现有预测工具基于从实验中导出的数据,条带理论的假设数,流体和结构之间的能量平衡以及升力系数数据库之间的能量平衡。从实验中进行和计算VIV响应的当前进步表明这些假设可能无效。实验观察与理论估计之间产生的主要差异来自提升系数数据库。在实验室条件下提取的数据库具有有限的雷诺数流动条件,并且仅考虑交叉流动运动。提取的水力动态励磁系数数据库被提出至优化问题,其中主要目的是与实验结果相比,最小化半经验工具的预测误差。我们优化了现有的激励系数数据库,以提高带有交错浮力模块的立管疲劳损伤预测。修改因子和优化水动力升力系数从壳勘探和生产测试的应用提供了新的优化激励系数数据集,这减少了预测提升器VIV响应与交错浮力模块的误差。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2309-2309|共1页
  • 作者单位

    Group of Marine Offshore and Subsea Technology (MOST) School of Engineering Newcastle University Newcastle upon Tyne United Kingdom;

    Group of Marine Offshore and Subsea Technology (MOST) School of Engineering Newcastle University Newcastle upon Tyne United Kingdom;

    Group of Marine Offshore and Subsea Technology (MOST) School of Engineering Newcastle University Newcastle upon Tyne United Kingdom;

    Group of Marine Offshore and Subsea Technology (MOST) School of Engineering Newcastle University Newcastle upon Tyne United Kingdom;

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