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Effects of vertical loading on lateral screw pile performance

机译:竖向荷载对侧向螺旋桩性能的影响

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摘要

The offshore wind energy sector faces new challenges as it moves into deeper water deployment. To meet these challenges new and efficient foundation solutions are required. One potential solution is to upscale onshore screw piles but they require verification of performance for new geometries and demanding loading regimes. This paper presents a 3D Finite Element Analysis (3D-FEA) investigation of screw pile behaviour when subjected to combined vertical and lateral loading in sand. The investigation varied screw pile length (L) and helical plate diameter (Dh) on piles with fixed core diameter (Dp) whilst subjecting the piles to combined axial and lateral loading. The results were compared to straight shafted piles with the same core diameter. The results of the analysis show that vertical compression loads increase the lateral capacity of screw piles whereas vertical uplift loads marginally reduce the lateral capacity. The down side of this enhanced lateral capacity is that the screw piles experience higher bending moments. This suggest that when using screw piles for offshore foundation applications structures should be designed to maintain axial compressive loads on the piles and that induced bending moments need to be adequately assessed when deciding on appropriate structural sections.
机译:随着向更深水域发展,海上风能行业面临着新的挑战。为了应对这些挑战,需要新的高效基础解决方案。一种潜在的解决方案是对陆上螺杆桩进行升级,但它们需要针对新的几何形状和苛刻的加载方式来验证性能。本文介绍了在砂土中承受竖向和横向荷载的同时进行的螺旋桩行为的3D有限元分析(3D-FEA)研究。研究对具有固定芯直径(Dp)的桩改变了螺旋桩的长度(L)和螺旋板直径(Dh),同时使桩承受轴向和横向的组合载荷。将结果与具有相同芯径的直轴桩进行比较。分析结果表明,竖向压缩载荷增加了螺旋桩的侧向承载力,而竖向提升载荷则略有减小了侧向承载力。这种增强的横向能力的不利方面是,螺旋桩承受更高的弯矩。这表明,在将螺旋桩用于海上基础施工时,应设计结构以保持桩上的轴向压缩载荷,并且在决定合适的结构截面时,需要适当评估引起的弯矩。

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