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Lateral free-field responses and kinematic interaction of monopiles to obliquely incident seismic waves in offshore engineering

机译:海上工程中单岩倾斜入射地震波的侧向自由场响应和运动相互作用

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This paper studies the lateral free-field response and dynamic interaction of monopiles with a partially/fully saturated porous seabed under a seawater layer, subjected to vertically and obliquely incident P and SV wave excitations. The solution of the coupled three-dimensional water-pile-soil vibration problem is developed using a rigorous semi-analytical method. Results for the free-field soil displacement and kinematic interaction factors of the pile head are obtained: the presence of water layer will increase or decrease the lateral free-field displace-ment for the P wave case, depending on whether the soil is fully saturated or partially saturated; the presence of water layer will have little influence, increase or decrease the lateral free-field displacement for the SV wave case, depending on the incident angle. Besides, the non-dimensional lateral kinematic interaction factors for both wave and SV wave cases, with different water depths, are illustrated over a broad non-dimensional frequency range. Similar to the free-field responses, monopile responses can generally be amplified or reduced with the presence of a water layer, depending on the saturation degrees of soil and incident angles in P wave case and SV wave case, respectively.
机译:本文研究了海水层下方具有部分/完全饱和的多孔海床的横向自由场响应和动态相互作用,进行垂直和倾斜入射的P和SV波激发。使用严格的半分析方法开发了耦合的三维水桩土振动问题的解决方案。获得桩头的自由场土壤位移和运动相互作用因子:水层的存在将增加或减少对P波形壳体的侧向自由场移动,这取决于土壤是否完全饱和或部分饱和;根据入射角,水层的存在对于SV波形壳体的横向自由场位移几乎没有影响,增加或降低。此外,在宽的非尺寸频率范围内示出了具有不同水深的波和SV波壳的非维度横向运动相互作用因子。与自由场响应类似,通常可以在水层的存在下,根据P波形壳体和SV波壳中的入射角的饱和度,通常可以扩增或减少单倍响应。

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