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Inspection of a high-cycle accumulation model for sand based on recalculations of a full-scale test on a gravity base foundation for offshore wind turbines

机译:基于对海上风力涡轮机的重力基础的全尺度试验重新计算的砂高循环累积模型检查

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Offshore wind turbines (OWT) are generally founded on piles or gravity base foundations. Up to now, there is a lack of validated and standardized analysis procedures for such foundations, especially for the serviceability limit state, i.e. for the prediction of accumulated deformations. In order to gain experience on the behaviour of a OWT gravity base foundation under typical offshore loading conditions, a full-scale test has been performed near the shore of the North Sea. The test foundation was subjected to about 1.5 million load cycles simulating several storm events. The foundation and the sandy subsoil have been extensively instrumented so that a large amount of measured data on the cyclic soil-structure interaction were collected. Meanwhile, a numerical procedure for the proof of the serviceability for OWT foundations was developed. The procedure is based on finite element (FE) calculations in combination with a high-cycle accumulation (HCA) model. The application of the HCA model in simulations of the full-scale test is described in this contribution. The essential simplification of the subsoil and the determination of the input parameters for the FE simulations are shown. The settlements, pore water pressures and soil pressures predicted by the HCA model are compared to the measurements.
机译:海上风力涡轮机(OWT)一般都在桩或重力基础上建立。到目前为止,对这种基础缺乏验证和标准化的分析程序,特别是对于可维护性极限状态,即预测积累变形。为了在典型的海上装载条件下获得OWT引力基础的行为的经验,北海岸附近进行了全面测试。测试基金会经过约150万负载循环,模拟几种风暴事件。已经广泛仪器和沙质底土进行了广泛的仪器,从而收集了对循环土结构相互作用的大量测量数据。同时,开发了对OWT基础的可靠性证明证明的数值手术。该过程基于有限元(FE)计算与高循环累积(HCA)模型组合。本贡献描述了HCA模型在全尺度测试模拟中的应用。示出了底层的基本简化和FE模拟的输入参数的确定。将HCA模型预测的沉降,孔隙水压力和土壤压力与测量相比。

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