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Hull/Mooring/Riser coupled motion simulations of thruster-assisted moored platforms

机译:推进器辅助的系泊平台的船体/系泊/立管耦合运动模拟

摘要

To reduce large motion responses of moored platforms in a harsh environment in deep waters, a thruster-assisted position mooring system can be applied. By applying the system, global dynamic responses can be improved in terms of the mooring line/riser top tensions, operational radii, and the top and bottom angle of the production risers. Kalman filtering as an optimum observer and estimator for stochastic disturbances is implemented in the developed control algorithm to filter out wave frequency responses. Investigation of the performance of thruster-assisted moored offshore platforms was conducted in terms of six-degree-of-freedom motions and mooring line/riser top tensions by means of a fully coupled hull/mooring/riser dynamic analysis program in the time domain and a spectral analysis. The two cases, motion analyses of a platform with thrusters and without thrusters, are extensively compared. The numerical examples illustrate that for deepwater position-keeping of platforms a thruster-assisted moored platform can be an effective solution compared to a conventionally moored platform.
机译:为了减少深水中恶劣环境中停泊平台的较大运动响应,可以使用推进器辅助位置停泊系统。通过应用该系统,可以在系泊缆绳/立管的顶部张力,工作半径以及生产立管的顶角和底角方面改善全局动态响应。在已开发的控制算法中,采用卡尔曼滤波作为随机干扰的最佳观测器和估计器,以滤除波频率响应。通过在时域内完全结合的船体/系泊/提升管动态分析程序,根据六自由度运动和系泊缆/提升管顶部张力对推进器辅助的系泊海上平台的性能进行了研究。频谱分析。广泛比较了两种情况,即带有推进器和不带有推进器的平台的运动分析。数值示例表明,对于平台的深水位置保持而言,与传统的系泊平台相比,推进器辅助的系泊平台可能是一种有效的解决方案。

著录项

  • 作者

    Ryu Sangsoo;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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