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Field experimental study on the retrofit of cracked onshore wind turbine foundations using externally prestressed anchor bolts

机译:外部预应力地脚螺栓加固陆上风力发电机基础的现场试验研究

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Inserted rings are considered as a crucial element of onshore wind turbine foundations to resist uplift and compressive forces at the interface of the steel towers and concrete foundations. These inserted rings can be deficient because of the crushing of the concrete and the occurrence of cracks as the result of the vibration of the tower and the shrinkage of the concrete. Therefore, it is very important to develop an efficient retrofitting system in order to restore the lost capacity and/or even outperform it. The objective of this paper is to develop a retrofit strategy for the deficient foundations using external prestressing technique and verify it using field data. A field test was conducted on two onshore wind turbine foundations with almost the same level of cracks. One of them was retrofitted using externally prestressed anchor bolts after the appearance of cracks, and the other was the control foundation. Strain sensors were installed in the foundation and strain signals were recorded in the period of construction, prestressing, and operation. Field test results showed that the prestressing technique can limit the crack width and improve the section stiffness.
机译:插入环被认为是陆上风力涡轮机基础的重要组成部分,可以抵抗钢塔和混凝土基础界面处的隆起和压缩力。这些插入的环可能是不足的,因为混凝土被压碎,并且由于塔架的振动和混凝土的收缩而产生裂缝。因此,开发一种有效的改造系统以恢复损失的容量和/或甚至超过损失的容量非常重要。本文的目的是使用外部预应力技术为不足的地基开发改造策略,并使用现场数据进行验证。在两个裂纹水平几乎相同的陆上风力涡轮机基础上进行了现场测试。其中一个是在出现裂缝后使用外部预应力锚固螺栓翻新的,另一个是控制基础。在基础中安装了应变传感器,并在施工,预应力和运行期间记录了应变信号。现场测试结果表明,预应力技术可以限制裂纹宽度并提高截面刚度。

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