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Breaking wave loads on monopiles for offshore wind turbines and estimation of extreme overturning moment

机译:海上风力涡轮机单桩的波浪载荷和极限倾覆力矩的估算

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Measurements of breaking wave forces on vertical circular columns have been re-analysed, where substantial magnification over forces because of non-breaking non-linear waves may occur, by a factor of up to 2.8. The analysis shows that this factor increases as the depth parameter kd decreases, being close to unity for kd ȦB; 1.5 (k is the wave number and d is depth). Non-breaking wave forces are predicted reasonably by non-linear stream function wave theory using Morison's equation with empirical drag and inertia coefficients. A study was then made of the magnitude of wave overturning moment in relation to hub moment due to wind on standard 2 and 5 MW turbines with a 6 m diameter column. This showed that the wave moment in extreme conditions is greater than wind 'hub' moment for depths greater than about 7 and 13 m for the 2 and 5 MW turbines, respectively. Monopiles are normally used in depths below about 30 m and extreme moments due to waves occur when waves are depth-limited and defined by the Miche criterion, well below the limiting value of kd for the onset of depth-induced breaking. The maximum moment for these depths is expected to be predicted reasonably.
机译:已经重新分析了垂直圆柱上的破波力的测量值,其中可能会由于非破波非线性波而对力造成较大的放大倍数,最高可达2.8。分析表明,该系数随着深度参数kd的减小而增大,对于kdȦB接近于1。 1.5(k是波数,d是深度)。通过非线性流函数波理论,使用具有经验阻力和惯性系数的莫里森方程,可以合理地预测非破坏波力。然后研究了直径为6 m的标准2 MW和5 MW涡轮机因风引起的波浪倾覆力矩与轮毂力矩的关系。这表明,对于2兆瓦和5兆瓦涡轮机,在深度分别大于7和13 m的情况下,极端条件下的波浪力矩大于风“轮毂”力矩。单桩通常用于约30 m以下的深度,当波浪受到深度限制并由Miche准则定义时,会由于波浪而产生极端力矩,远低于kd的极限值,从而引发了深度诱发的断裂。预计这些深度的最大力矩是合理预测的。

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