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Prediction and Monitoring of Installation of Offshore Foundation Monopiles for Windfarms

机译:风电场离岸单桩安装预测与监测

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Upon recently, most offshore foundations were based on a number of driven piles that were installed with an impact hammer. With the increase in offshore windfarms two major developments have occurred: the shift from jackets to monopiles, leading to increase of the diameter of the foundation piles, and a shift from impact hammers to vibro hammers. As the use of vibratory hammers is becoming more and more common practice, the need for accurate vibro-driving simulation software has increased, which requires that the soil modelling is enhanced to address soil fatigue during pile driving and to predict reliably the soil behavior and resistance during pile driving. In addition pile driving monitoring, which is routine for piles driven with an impact hammer, needs to become common practice. This paper addresses advances in soil modelling that allows more accurate pile driving simulation as well as the application of Vibro Driving Analysis (VDA) or Monitoring (VDM) to validate the simulation results. This is illustrated by a case study of the test pile for the Delft Offshore Turbine project, a 28 m long monopile with a diameter of 4 m that was driven 15 m into dense sand layers using a vibro hammer. After some 6 months the pile was extracted, and pile driving simulations and VDA were done both for the installation and extraction phase.
机译:最近,大多数海上基础都是基于许多用冲击锤安装的打入桩。随着海上风电场的增加,发生了两个主要的发展:从外套到单桩的转变,导致基础桩直径的增加,以及从冲击锤到振动锤的转变。随着振动锤的使用变得越来越普遍,对精确的振动驱动仿真软件的需求也在增加,这要求对土壤建模进行增强,以解决打桩过程中的土壤疲劳并可靠地预测土壤的行为和阻力在打桩期间。另外,对于用冲击锤打桩的例行打桩监测是很常见的做法。本文介绍了土壤建模方面的进展,这些进展使桩驱动模拟更加准确,并应用了振动驱动分析(VDA)或监控(VDM)来验证模拟结果。代尔夫特海上涡轮机项目的测试桩的案例研究表明了这一点,该项目是长28 m的单桩,直径为4 m,并使用振动锤将其打入15 m的致密砂层中。大约6个月后,提取了桩,并在安装和提取阶段进行了桩身模拟和VDA。

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