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Dynamic analysis of a floating hybrid spar tension leg platform concept for wind monitoring applications in deep sea

机译:浮动式混合翼梁张力腿平台概念在深海风监测中的动态分析

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摘要

This study presents an investigation to assess the motions experienced by a floating hybrid spar-tension leg platform structure when supporting a wind-monitoring lattice tower in deep water conditions of the Central Mediterranean. The numerical study is based on the software package ANSYS AQWA™. The structure supports a 30 m wind-monitoring tower as well as a LiDAR system. A parametric analysis was carried out for different geometrical and met-ocean conditions, and the simulations were restricted to regular (single frequency) wave and constant wind speed conditions only. The Morison formulation was used to resolve the hydrodynamic loads in a time domain. The study shows how the natural periods of the floating wind-monitoring mast structure decrease with increasing buoyancy-to-weight ratios. From the time-series simulations, it was evident that slender spars experience smaller displacements. This is a favourable result as it results in more reliable wind measurements taken by the cup-type anemometers. Finally, a sensitivity analysis was carried out to examine the variations of surge motion predictions resulting from deviations in the hydrodynamic coefficients. It was observed that the platform surge motion is more sensitive to deviations in the added mass coefficient than the drag coefficient.
机译:这项研究提出了一项评估,以评估地中海中部深水条件下浮动混合式翼梁-张力腿平台结构在支撑风量监测格塔时所经历的运动。数值研究基于软件包ANSYS AQWA™。该结构支持30 m的风塔和LiDAR系统。针对不同的几何条件和海洋条件进行了参数分析,并且模拟仅限于规则(单频)波和恒定风速条件。 Morison公式用于解决时域中的流体动力载荷。研究表明,浮动风向监测桅杆结构的自然周期如何随浮力重量比的增加而减少。从时间序列模拟中可以明显看出,细长的梁的位移较小。这是一个有利的结果,因为它可以使杯型风速计进行更可靠的风测量。最后,进行了敏感性分析,以检查由于水动力系数偏差而引起的喘振预测的变化。观察到,平台喘振运动对增加的质量系数中的偏差比阻力系数更敏感。

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