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Impedance of surface footings on layered ground

机译:分层地面上的表面基础的阻抗

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Traditionally only the static bearing capacity and stiffness of the ground is considered in the design of wind turbine foundations. However, modern wind turbines are flexible structures with resonance frequencies as low as 0.2 Hz. Unfortunately, environmental loads and the passage of blades past the tower may lead to excitation with frequencies of the same order of magnitude. Therefore, dynamic soil-structure interaction has to be accounted for in order to get an accurate prediction of the structural response. In this paper the particular problem of a rigid foundation on a layered subsoil is discussed. Based on the Green's function for a stratified half-space, the impedance of a surface footing with arbitrary shape is computed. A wind turbine foundation is analysed in the frequency range 0-3 Hz. Analyses show that soil stratification may lead to significant changes in the impedance related to both rocking and translation at frequencies close to the first resonance frequency of an offshore wind turbine.
机译:传统上,在风力涡轮机基础设计中只考虑地面的静态承载力和刚度。然而,现代风力涡轮机是具有低至0.2Hz的共振频率的柔性结构。不幸的是,环境负荷和叶片经过塔架的通过可能导致以相同数量级的频率进行激励。因此,必须考虑动态的土-结构相互作用,以获得对结构响应的准确预测。本文讨论了分层地基上刚性基础的特殊问题。基于分层半空间的格林函数,计算具有任意形状的表面基础的阻抗。在0-3 Hz的频率范围内分析了风机基础。分析表明,在接近海上风力涡轮机第一共振频率的频率下,土壤分层可能导致与摇摆和平移相关的阻抗发生显着变化。

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