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Optimization and application of a crashworthy device for the monopile offshore wind turbine against ship impact

机译:单桩海上风机抗撞装置的优化及应用

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The risk of offshore wind turbines collision with ships is on the rise during the service period with the increase of offshore wind farms and ship routings. In order to minimize the damage of offshore wind turbines caused by ship impact, a crashworthy device, which contains a rubber blanket and outer steel shell, is proposed. The rubber hardness and the rubber and steel shell thicknesses of the crashworthy device are optimized by comparing the collision-force and nacelle acceleration using LS-DYNA explicit code. The main reason for lessening the maximum collision-force and nacelle acceleration is that the rubber blanket could absorb a portion of ship energy by using its own structure deformation. Therefore, an optimal crashworthy device for the monopile offshore wind turbine, meeting the weight constraint, is suggested and implemented in various impact scenarios. The obvious effects of crashworthy devices are a decrease of the maximum collision-force and nacelle acceleration, especially for ships with smaller initial kinetic energy. The damage area of plastic strain for foundations is reduced to zero when crashworthy devices are used in the analysis scenarios. This paper may be useful in anti-impact design of offshore wind turbines. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在服务期内,随着海上风电场和船舶路线的增加,海上风力涡轮机与船舶相撞的风险正在增加。为了最大程度地减少船舶冲击对海上风力涡轮机造成的损害,提出了一种防撞装置,该装置包含橡胶毯和钢外壳。通过使用LS-DYNA显式代码比较碰撞力和机舱加速度,优化了防撞装置的橡胶硬度以及橡胶和钢壳的厚度。减小最大碰撞力和机舱加速度的主要原因是,橡皮布可以利用自身的结构变形来吸收一部分船舶能量。因此,提出并实现了满足重量限制的单桩海上风力涡轮机的最佳防撞装置,并在各种撞击情况下实现了该装置。防撞装置的明显作用是最大碰撞力和机舱加速度的减小,特别是对于初始动能较小的船舶。在分析场景中使用具有防撞功能的设备时,地基塑性应变的损坏区域减小为零。本文对于海上风力发电机的抗冲击设计可能是有用的。 (C)2015 Elsevier Ltd.保留所有权利。

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