Analysis of a Monopile under Two-Way Cyclic Loading

IF 0.5 Q4 ENGINEERING, GEOLOGICAL
D. Nigitha, Deendayal Rathod, K. Krishnanunni
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引用次数: 1

Abstract

A large diameter monopiles are commonly used as an offshore wind turbine (OWT) foundation to withstand lateral cyclic loads due to wind and wave action. In the present study, a two-dimensional finite element analysis was performed to evaluate the behavior of a monopile under two-way lateral cyclic loading. The centrifuge test carried out on a 0.7m diameter pile was being used to validate the constituent model. The parametric study was carried out on a monopile by varying the slenderness ratio (L/D = 4, 5, and 6) and load amplitudes (30%, 40%, and 50% of the ultimate pile capacity). From the load-displacement response of a monopile, it was observed that the measured accumulated displacement increases drastically for the first load cycle. For a given embedded length, the lateral displacement was observed to increase with an increase in load amplitude. For an embedded length of L/D = 4, the increase in load amplitude from 30% - 40% resulted in an increase in lateral displacement to 24%.
双向循环荷载作用下单桩的分析
大直径单桩通常用于海上风力发电机组的基础,以承受由风和波浪作用引起的横向循环荷载。在本研究中,进行了二维有限元分析,以评估双向横向循环荷载下单桩的行为。在直径0.7m的桩上进行离心试验,验证构件模型。参数化研究在单桩上进行,通过改变长细比(L/D = 4,5和6)和荷载幅值(30%,40%和50%的极限桩容量)。从单桩的荷载-位移响应中可以观察到,在第一个荷载循环中,实测的累积位移急剧增加。对于给定的埋置长度,观察到横向位移随着荷载幅值的增加而增加。当埋置长度为L/D = 4时,荷载幅值从30%增加到40%,导致横向位移增加到24%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
11
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