首页> 外文会议>ASME 1st international offshore wind technical conference >COMPARING FREQUENCY AND TIME DOMAIN SIMULATIONS FOR GEOMETRY OPTIMIZATION OF A FLOATING OFFSHORE WIND TURBINE MOORING SYSTEM
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COMPARING FREQUENCY AND TIME DOMAIN SIMULATIONS FOR GEOMETRY OPTIMIZATION OF A FLOATING OFFSHORE WIND TURBINE MOORING SYSTEM

机译:漂浮式海上风轮机系泊系统几何优化的频率和时域模拟比较

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This paper explores geometry optimization of an offshore wind turbine's mooring system considering the minimization of the material cost and the cumulative fatigue damage. A comparison of time domain simulations against frequency domain simulations is made to explore the suitability of these methods to the design process. The efficient design options, the Pareto front, from the frequency domain study are also re-evaluated using time domain simulations and compared against the time domain Pareto front. Both the time and frequency domain results show optimal results utilizing similar design philosophies, however, the frequency domain methods severely under predict the fatigue loads in the mooring system and incorrectly class infeasi-ble solutions as feasible. The frequency domain is therefore not suitable for optimization use without some external means of applying engineering constraints. Furthermore, re-evaluation of the frequency domain solutions provides guidance to the uncertainty and the necessary design fatigue factors required if implementing frequency domain methods in design.
机译:本文探讨了海上风机的系泊系统的几何优化,同时考虑了材料成本和累积疲劳损伤的最小化。将时域仿真与频域仿真进行了比较,以探索这些方法对设计过程的适用性。频域研究中的有效设计选项Pareto前沿也使用时域仿真进行了重新评估,并与时域Pareto前沿进行了比较。时域和频域结果都显示了使用相似设计原理的最佳结果,但是,频域方法严重地在预测系泊系统中的疲劳载荷的情况下,将可行的方法错误地分类。因此,如果没有一些施加工程约束的外部手段,则频域不适合优化使用。此外,对频域解决方案的重新评估为设计中实施频域方法所需的不确定性和必要的设计疲劳因子提供了指导。

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