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Permanent accumulated rotation of an offshore monopile wind turbine in sand during a storm

机译:风暴期间,海上单桩风力涡轮机在沙子中的永久累积旋转

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Offshore wind turbines exposed to storm situations are subjected to static and dynamic loads from the same direction over a considerable period of time. Such cyclic loading can potentially result in soil degradation, leading to an undesired permanent rotation of the wind turbine. This paper presents a workflow to predict the permanent accumulated rotation of an offshore monopile wind turbine in sand during an extreme storm event incorporating the use of fully nonlinear irregular waves versus linear waves in current practice. The fully nonlinear irregular waves are realized from a potential flow solver OceanWave3D previously validated at up to near-breaking wave conditions. Given the wave kinematics, the aero-hydro-elastic code HAWC2 is used to calculate horizontal loading and bending moment acting on the embedded pile head. The irregular load series is then decomposed into a set of constant-amplitude load parcels using rainflow counting. Eventually, the permanent accumulated rotation is predicated using the method proposed by LeBlanc et al. (2010b) with Miner's rule-based superposition. In this paper, a case study of the DTU 10MW wind turbine supported by a monopile at 33 m water depth in sand is presented, where the pile is primarily laterally loaded. The simulation results suggest the importance of taking accumulated rotation into design. The permanent accumulated rotation is primarily decided by soil capacity, loading characteristics and pre-loading history. Furthermore, the results show that wave nonlinearity has only limited influence on the permanent accumulated rotation.
机译:暴露在风暴中的海上风力涡轮机在相当长的一段时间内承受着来自同一方向的静态和动态载荷。这样的循环负载可能潜在地导致土壤退化,从而导致风力涡轮机的不希望的永久旋转。本文提出了一种工作流程,以预测在极端暴风雨事件中沙子中的海上单桩风力涡轮机的永久累积旋转,该方法结合了当前实践中使用完全非线性的不规则波与线性波的使用。完全非线性的不规则波是由潜在的流量求解器OceanWave3D实现的,该求解器先前已在接近破波的情况下进行了验证。给定波浪运动学,使用空气-水弹性代码HAWC2来计算作用在嵌入式桩头上的水平载荷和弯矩。然后,使用雨水流量计数将不规则载荷序列分解为一组恒定振幅载荷块。最终,使用LeBlanc等人提出的方法预测永久的累积旋转。 (2010b)与Miner基于规则的叠加。本文以DTU 10MW风力发电机为例,研究了在沙子中水深33 m处由单桩支撑的情况,该桩主要受到侧向载荷。仿真结果表明了将累积旋转量纳入设计的重要性。永久累积的旋转主要取决于土壤容量,荷载特性和预荷载历史。此外,结果表明,波浪非线性仅对永久累积旋转具有有限的影响。

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