Influence of cyclic movement on the hardening process of grout: case of offshore wind turbine installation

B. Delsaute, R. Furnemont, M. Königsberger, S. Staquet
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引用次数: 2

Abstract

The foundation of offshore wind turbines in a rocky seabed is a major technical challenge for engineers. To insure the stability of the wind turbine, the ring between the steel monopile and the seabed is filled with a grout. The objective of this research is to point out the influence of early age movements and deformational restraints on the performance of the grouted connections. Another objective is to evaluate the performance of different grout materials by means of several experimental tests. A first experimental campaign is performed to characterize the behavior of the grout during hardening and to define the stress induced by the restraint of the free deformations. In a second campaign, the behavior of the grout under cyclic displacements since casting is studied. A Temperature Stress Testing Machine (TSTM) has been used to simulate the influence of cyclic horizontal movements by applying cyclic displacements and loadings since casting on samples designed with different grout materials. A segregation device was used to simulate the effect of the waves in the vertical direction. The results of both campaigns are then used to evaluate the risk of damage caused by the movement of the waves during the hardening of the grout. From these newly developed experimental tools, new indicators were developed in order to compare the performance of different grouts under cyclic displacement since casting.
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循环运动对灌浆硬化过程的影响——以海上风力发电机组为例
在岩石海床上建立海上风力涡轮机的基础是工程师面临的一个重大技术挑战。为了保证风力机的稳定性,钢桩与海底之间的环被灌浆填充。本研究的目的是指出早期运动和变形约束对灌浆连接性能的影响。另一个目的是通过多次试验来评价不同灌浆材料的性能。进行了第一次试验,以表征浆液在硬化过程中的行为,并确定由自由变形的约束引起的应力。在第二阶段,研究了灌浆自浇筑以来在循环位移作用下的特性。采用温度应力试验机(TSTM)对不同灌浆材料设计的试样施加浇筑后的循环位移和荷载,模拟了循环水平运动的影响。采用分离装置模拟了波浪在垂直方向上的影响。这两种运动的结果随后被用来评估在灌浆硬化过程中由波浪运动引起的破坏风险。利用这些新开发的实验工具,开发了新的指标,以比较浇筑以来不同注浆在循环位移作用下的性能。
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