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On the pile tension capacity of scoured tripod foundation supporting offshore wind turbines

机译:浅谈灌木三脚架基金会支护近海风力涡轮机的桩张力

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摘要

The application of tripod foundations in offshore wind turbines means that the piles are subjected to obvious uplift loads, while a process of soil erosion around offshore foundations caused by waves and currents, i.e. scour, can result in a reduced foundation capacity in vertical direction. However, currently few efforts have been made to evaluate the scour behavior around the tripod foundation, and the literature available on the investigation of scour effect on the tension capacity of tripod pile is also scanty. This study is to present a simplified method for the analysis of pile tension capacity of scour-affected tripod foundation in sand, which can account properly for various dimensions of the local scour hole formed around the tripod piles as well as that of the local scour hole under the main column of the tripod foundation. Based on a field scour measurement at a tripod foundation in the Alpha Ventus test site, a series of parametric analyses are performed by using the present method on a tripod pile under a wide range of scour-hole dimensions of the tripod foundation. The effects of depth, width, slope angle of the scour hole around both the pile and the main column of the tripod foundation as well as that of pile slenderness on the tension capacity of the tripod pile are discussed.
机译:三脚架基础在海上风力涡轮机中的应用意味着桩的隆起载荷,而紫外地基地区的土壤侵蚀过程,即冲浪引起的,即缝,可以导致垂直方向上的基础容量降低。然而,目前已经努力评估三脚架基金会周围的冲浪行为,并就三脚架堆的张力效应调查的文献也很少。本研究旨在提出一种简化的方法,用于分析砂沙上的冲刷三脚架基础的桩张力容量,这可以适用于围绕三脚架桩周围形成的局部冲刷孔的各种尺寸以及局部冲刷孔的各种尺寸在三脚架基金会的主栏中。基于Alpha Ventus测试站点的三脚架基础的场缝测量,通过在三脚架基础的各种冲浪孔尺寸下使用本方法进行一系列参数分析。讨论了三脚架基础桩孔周围的深度,宽度,坡度角度的影响以及三脚架桩的张力容量上的桩狭窄。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|2069-2069|共1页
  • 作者

    F. LIANG; H. ZHENG; H. ZHANG;

  • 作者单位

    Department of Civil Engineering Shanghai Normal University Shanghai 201418 China;

    Department of Civil Engineering Shanghai Normal University Shanghai 201418 China;

    Department of Civil Engineering Shanghai Normal University Shanghai 201418 China;

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  • 正文语种 eng
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