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Vertical earthquake response of megawatt-sized wind turbine with soil-structure interaction effects

机译:兆瓦级风力发电机的竖向地震响应与土-结构相互作用

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The dynamic response of a wind turbine on monopile is studied under horizontal and vertical earthquake excitations. The analyses are carried out using the finite element program SAP2000. The finite element model of the structure is verified against the results of shake table tests, and the earthquake response of the soil model is verified against analytical solutions of the steady-state response of homogeneous strata. The focus of the analyses in this paper is the vertical earthquake response of wind turbines including the soil-structure interaction effects. The analyses are carried out for both a non-homogeneous stratum and a deep soil using the three-step method. In addition, a procedure is implemented which allows one to perform coupled soil-structure interaction analyses by properly tuning the damping in the tower structure. The analyses show amplification of the ground surface acceleration to the top of the tower by a factor of two. These accelerations are capable of causing damage in the turbine and the tower structure, or malfunctioning of the turbine after the earthquake; therefore, vertical earthquake excitation is considered a potential critical loading in design of wind turbines even in low-to-moderate seismic areas. Copyright (c) 2015John Wiley & Sons, Ltd.
机译:研究了水平和垂直地震激励下风力涡轮机在单桩上的动力响应。使用有限元程序SAP2000进行分析。根据振动台试验结果验证了结构的有限元模型,并根据均质层稳态响应的解析解验证了土壤模型的地震响应。本文的分析重点是风力涡轮机的垂直地震响应,包括土-结构相互作用的影响。使用三步法对非均质地层和深层土壤都进行了分析。另外,实施了一种程序,该程序允许通过适当地调整塔架结构中的阻尼来执行耦合的土-结构相互作用分析。分析表明,到塔顶的地面加速度放大了两倍。这些加速度会导致涡轮机和塔架结构损坏,或者在地震后使涡轮机发生故障;因此,即使在中低地震区,垂直地震激励也被认为是风机设计中的潜在关键负荷。版权所有(c)2015 John Wiley&Sons,Ltd.

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