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Numerical Investigation of the Strengthening Method by Circumferential Prestressing to Improve the Fatigue Life of Embedded-Ring Concrete Foundation for Onshore Wind Turbine Tower

机译:周向预应力提高陆上风力涡轮机塔嵌入环混凝土基础疲劳寿命的增强方法的数值研究

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摘要

An embedded-ring foundation connected to the steel tower above it by inserting the steel ring into the concrete foundation is a traditional and widely used form for wind turbine towers. An insufficiently embedded depth of the steel ring leads to stress concentration on the corner of the concrete above the windward-side T-shaped plate. A damage zone of concrete develops, leading to gaps between the steel ring and the foundation concrete and a decline in the restrain stiffness of the foundation pier, which induces a larger horizontal displacement of the steel tower and a decrease in the natural frequency for the wind turbine system. To improve the fatigue life of the concrete around the steel ring under the precondition of not destroying the original foundation, a strengthening method using a circumferential prestressing technique is proposed in this paper. A series of numerical analyses were carried out to analyze the stress state change in the foundation concrete before and after strengthening. The fatigue life of the concrete above the T-shaped plate was evaluated according to CEB-FIP model code (fib Model Code for Concrete Structures 2010). The results show that the strengthening method can effectively decrease the fatigue stress amplitude and improve the fatigue life of the concrete above the T-shaped plate.
机译:通过将钢环插入混凝土基础上,将嵌入环基础连接到其上方,是一种传统和广泛使用的风力涡轮机塔的形式。钢环的不充分嵌入的深度导致在挡风玻璃T形板上的混凝土的角落上产生应力集中。混凝土的损伤区发展,导致钢环和基础混凝土之间的差距以及基础码头的抑制刚度下降,这引起了钢塔的较大水平位移和风的自然频率下降涡轮系统。为了在不破坏原始基础的前提下改善钢环周围混凝土的疲劳寿命,本文提出了一种使用圆周预应力技术的强化方法。进行了一系列数值分析,以分析加强前后基坑混凝土的应力状态变化。根据CEB-FIP模型代码评估了T形板上的混凝土的疲劳寿命(FIB模型代码2010的混凝土结构)。结果表明,加强方法可以有效地降低疲劳应力幅度,提高T形板上混凝土的疲劳寿命。

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