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Compliance and damping of piles for wind tower foundation in non- homogeneous soils by the finite-element boundary-element method

机译:有限元边界元法法桩桩桩桩的依从性和阻尼

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摘要

A combined finite-element boundary-element method for the dynamic interaction of the soil with flexible structures such as single piles or complete wind energy towers has been developed. Flexible piles in different soils are analysed in frequency domain. The different parameters such as the stiffness of the soil, the bending stiffness and the radius of the hollow pile are analysed for their influence on the complex compliances. The results have been determined as specific power laws which are different for the different load cases (horizontal, rocking, coupling) and for the different soil models (Winkler, continuum with constant, root-parabolic and proportional-linear stiffness variation). The strongest influence of the soil stiffness can be found for the homogeneous soil and the horizontal component. Winkler soils have a weaker influence than the corresponding continuous soils. An offshore wind energy tower has been modeled and calculated for wind and wave loads.
机译:已经开发了一种具有柔性结构的土壤动态相互作用的组合有限元边界元方法,如单桩或完整的风能塔。在频域中分析了不同土壤中的柔性桩。分析了诸如土壤的刚度,弯曲刚度和中空桩半径的不同参数,以对复杂的顺应性的影响。结果已被确定为不同的载荷盒(水平,摇摆,耦合)和不同土壤模型(Winkler,恒定,根抛物和比例线性刚度变异的不同土壤模型)不同的特定动力定律。可以找到土壤刚度的最强烈影响均可用于均匀的土壤和水平组分。 Winkler土壤的影响力较弱,而不是相应的连续土壤。海上风能塔已经为风和波浪荷载进行了建模和计算。

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