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Relationships between lateral and rotational load transfer stiffnesses and soil modulus for the elastic response of monopiles

机译:横向和旋转载荷转移刚度与单岩弹性响应的土壤模量的关系

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摘要

Monopiles supporting offshore wind turbines are generally of relatively low slenderness ratio and are subjected to lateral loads that emanate from high above the seabed at an eccentricity that in most cases exceeds the embedded length of the pile. The rotational stiffness is a critical aspect of their design, owing to tight tolerances on the cumulative rotation that is permitted by industry guidelines. From a practical perspective, most design calculations for the lateral response are performed using load transfer analysis. However, the low slenderness ratio and high moment loading relative to the horizontal load have prompted closer scrutiny of the load transfer formulations that have been used historically in the offshore oil and gas industry, since these were calibrated from the response of much longer piles under very different loading conditions. Recent industry-led studies have led to new recommendations, including the addition of lateral and rotational springs at the pile base and rotational load transfer springs distributed down the pile shaft. As a first step to evaluate the initial stiffness of such springs, this paper presents results from three-dimensional finite element analyses of a homogenous elastic soil, with the aim of relating values of spring stiffness to the elastic shear modulus of the soil. Effects of non-uniform soil stiffness are discussed and the gradually increasing benefits of including the additional spring terms are quantified.
机译:支撑近海风力涡轮机的单厚度通常具有相对较低的纤细比,并且经受横向载荷,其在大多数情况下偏心的偏心高于海底上方的高负荷。由于行业指南允许的累积旋转的耐受性紧张,旋转刚度是其设计的关键方面。从实际角度来看,使用负载转移分析执行横向响应的大多数设计计算。然而,相对于水平载荷的低细长比和高力矩负荷促使历史上历史上在海上石油和天然气行业中使用的负载转移制剂的仔细审查,因为这些是从非常长的桩的响应中校准不同的装载条件。最近的行业导致研究导致了新的建议,包括在桩基和旋转载荷转移弹簧上添加侧向和旋转弹簧,分布在桩轴下。作为评估这种弹簧的初始刚度的第一步,本文提出了均匀弹性土的三维有限元分析结果,目的是将弹簧刚度的值与土壤的弹性剪切模量相关联。讨论了非均匀土壤刚度的影响,量化了包括额外的弹簧术语的逐渐增加的益处。

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