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Centrifuge modelling of large diameter pile in sand subject to lateral loading

机译:砂土中大直径桩受侧向荷载的离心模型

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摘要

Large-diameter (4 to 6 m) rigid monopiles are often used as foundations for offshore wind turbines. The monopiles are subjected to large horizontal forces and overturning moments and they are traditionally designed based on the p-y curve method. The p-y curves recommended in offshore design regulations are developed for long flexible piles with diameters up to approximately 2.0 m and are based on a very limited number of tests. Hence, the method has not been validated for rigid piles with diameters of 4 to 6 m. The primary issues concerning the validity of the standard p-y curves for large diameter rigid piles are:  The initial stiffness of the curves and description of the static behaviour, including ultimate bearing capacity.  The behaviour with respect to cyclic loading both stiffness degradation and ultimate bearing capacity. The aim of the present research is to investigate the static and cyclic behaviour of large diameter rigid piles in dry sand by use of physical modelling. The physical modelling has been carried out at Department of Civil Engineering at the Danish Technical University (DTU.BYG), in the period from 2005 to 2009. The main centrifuge facilities, and especially the equipment for lateral load tests were at the start of the research in 2005 outdated and a major part of the work with the geotechnical centrifuge included renovation and upgrading of the facilities. The research with respect to testing of large diameter piles included:  Construction of equipment for preparation of sand samples.  Testing of preparation method.  Modification of available loading equipment for lateral load tests.  Calibration of equipment.  Completion of a series of lateral load tests. The lateral load tests carried out represent prototype piles with a diameter of 1, 2 and 3 m with embedment lengths of 6, 8 and 10 times the diameter. The tests have been carried out with a load eccentricity of 2.5 m to 6.5 m above the sand surface. The present report includes a description of the centrifuge facilities, applied test procedure and equipment along with presentation of the obtained results.
机译:大直径(4至6 m)的刚性单桩通常用作海上风力发电机的基础。单桩承受较大的水平力和倾覆力矩,传统上是根据p-y曲线法设计的。海上设计规范中建议的p-y曲线是为直径不超过2.0 m的长形柔性桩开发的,并且基于非常有限的测试次数。因此,该方法尚未针对直径为4至6 m的刚性桩进行验证。有关大直径刚性桩的标准p-y曲线的有效性的主要问题是:曲线的初始刚度以及对静态行为的描述,包括极限承载力。 关于循环载荷的行为,包括刚度下降和极限承载力。本研究的目的是通过物理建模研究大直径刚性桩在干沙中的静态和循环特性。物理建模是在2005年至2009年期间在丹麦技术大学(DTU.BYG)的土木工程系进行的。主要的离心机设施,尤其是用于侧向载荷测试的设备,是在该系统的初期。 2005年的研究已经过时,岩土离心机的主要工作包括设备的翻新和升级。有关测试大直径桩的研究包括:建造用于制备沙土样品的设备。 测试制备方法。 修改用于横向载荷测试的可用载荷设备。 设备校准。 完成一系列侧向载荷测试。进行的侧向载荷测试表示原型桩的直径为1、2和3 m,嵌入长度为直径的6、8和10倍。测试是在沙子表面上方2.5 m至6.5 m的负载偏心率下进行的。本报告包括对离心机设施,应用的测试程序和设备的描述,以及对所得结果的介绍。

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    Leth Caspar Thrane;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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