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PILE-SOIL INTERACTION UNDER CYCLIC LOADINGS FOR OFFSHORE WIND MONOPILES

机译:海上风纪用循环载荷下桩土相互作用

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Offshore wind structures are subjected to cyclic loadings from wind, wave and current which must be accounted for when designing foundations. The effects of cyclic loadings can govern the dimension of the foundations. However, less standard and calculation procedure for designing foundations under cyclic loadings is generally accepted in practical design. A parametric study at the generic clay profiles were carried out by using the conventional beam column approach and the finite element analysis. In addition, a monopile foundation at the layered soil profiles in Korean West Sea were designed taking into cyclic loading effect account. Both design results show that the bending moments and shear forces along the pile by using beam column approach are larger than the results from the FE analysis. The FE analysis gives less pile displacement and rotation than the beam column approach. The reason for these differences can be partially explained by the soil reactions in the upper soil profiles. For the clay layers the lateral soil resistance is generally higher in the FE analyses compared to the cyclic p-y curves. However the lateral resistance in the silt sand layers is greater by using the standard cyclic p-y curves with a drained friction angle than using the constitutive models applying cyclic properties. Based on the results, a practical approach of monopile design for the specific offshore location can be recommended by calibrating and simplifying cyclic p-y curves from the results of FE analyses taking into account the cyclic stress-stain response of the soil.
机译:海上风力结构受风,波浪和电流的循环负载,这在设计基础时必须考虑。循环载荷的影响可以控制基础的尺寸。然而,在实际设计中通常接受在循环负载下设计基础的标准和计算步骤。通过使用传统的光束柱方法和有限元分析来执行在通用粘土轮廓的参数研究。此外,设计韩国西海的层状土壤剖面的单披露基础,始于循环加载效果账户。设计结果表明,使用梁柱方法沿着桩的弯曲力矩和剪切力大于FE分析的结果。 Fe分析比梁柱方法提供较少的桩位移和旋转。这些差异的原因可以部分地解释上土壤剖面中的土壤反应。对于粘土层,与循环P-Y曲线相比,Fe分析中的横向防尘通常较高。然而,通过使用具有施加循环性质的组成型模型的标准循环P-Y曲线,淤泥砂层中的横向电阻更大。基于结果,通过从Fe分析结果校准和简化Fe分析结果的循环P-Y曲线来推荐用于特定海上位置的单升门设计的实用方法。考虑到土壤的循环应力 - 污渍响应。

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