首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >DYNAMIC ANALYSIS OF OFFSHORE MONOPILE WIND TURBINE INCLUDING THE EFFECTS OF WIND-WAVE LOADING AND SOIL PROPERTIES
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DYNAMIC ANALYSIS OF OFFSHORE MONOPILE WIND TURBINE INCLUDING THE EFFECTS OF WIND-WAVE LOADING AND SOIL PROPERTIES

机译:海上单涡轮风动力分析,包括风荷载和土壤特性的影响

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An engineering approach to dynamic analysis of an offshore monopile wind turbine is presented in this paper. The wind-wave coupling for shallow water conditions is considered. Different wind, wave and current loads on the wind turbine within the cut-in and cut-off conditions are taken into account. The hydrodynamic loading is computed based on the corresponding sea-states. The interaction between the foundation and the soil is simulated by nonlinear springs, which stiffness properties are obtained from the axial load transfer (t-z) curve, the tip load-displacement (Q-z) curve and the lateral load-deflection (p-y) curve. Three types of soil conditions are considered in the simulations, i.e., 100% sand layer, 50% sand layer (top) and 50% clay layer (bottom), as well as 100% clay layer. For a given current speed, the variations of the static and the dynamic responses of the wind turbine due to the effects of different wind-wave load combinations and soil conditions have been investigated and discussed.
机译:本文提出了一种对海上单桩风力发电机组进行动力分析的工程方法。考虑了浅水条件下的风波耦合。考虑了切入和切出条件下风力涡轮机上的不同风,波浪和电流负载。根据相应的海况计算水力负荷。地基与土壤之间的相互作用是通过非线性弹簧模拟的,其刚度特性是从轴向载荷传递(t-z)曲线,尖端载荷-位移(Q-z)曲线和横向载荷-挠度(p-y)曲线获得的。模拟中考虑了三种类型的土壤条件,即100%砂层,50%砂层(顶部)和50%粘土层(底部)以及100%粘土层。对于给定的当前速度,已经研究和讨论了由于不同的风浪荷载组合和土壤条件的影响,风力涡轮机的静态和动态响应的变化。

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