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APPLICATION OF DRILLED SHAFT FOUNDATIONS FOR UTILITY SCALE WIND TURBINES IN A HIGH SEISMIC ENVIRONMENT

机译:钻孔竖井基础在高地震环境下公用规模风轮机中的应用

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Drilled shaft foundations have been used for several decades for highway and building applications; however they have only seen limited use in foundations for modern utility scale wind turbines. The limited use of drilled shaft foundations for wind turbines is likely due to the perceived difficulty in fatigue analysis, load and resistance factor design, and meeting the dynamic stiffness requirements of the foundation system. The discussion provided in this paper demonstrates how all of these elements can be brought together in a practical manner to create an economical, robust foundation design taking into account all of the potential geotechnical hazards affecting the site. This paper presents a case history of a wind energy project located in Palm Springs, California in an area subject to high seismic loading from the nearby San Andreas Fault Zone, severe scour due to the project location in a flood plain, and constrained by endangered species habitat areas. This paper follows the project through design, including analysis of seismic loading, dynamic stiffness, soil-structure interaction, concrete and steel fatigue and drilled shaft capacity. Construction aspects of the project are also included in the paper.
机译:钻孔竖井基础已经在高速公路和建筑应用中使用了数十年。然而,他们仅在现代公用事业规模的风力涡轮机的地基中使用有限。由于在疲劳分析,载荷和阻力因数设计上遇到了困难,并且满足了基础系统的动态刚度要求,因此在风力涡轮机中使用钻孔式轴基础的应用可能受到限制。本文提供的讨论展示了如何将所有这些元素以一种切实可行的方式组合在一起,以创建一种经济,可靠的基础设计,同时考虑到影响该场地的所有潜在岩土工程危害。本文介绍了一个风能项目的案例历史,该风能项目位于加利福尼亚州的棕榈泉,该地区遭受附近圣安地列斯断层带的高地震负荷,该项目位于洪泛平原,因此遭受严重冲刷,并受到濒危物种的限制栖息地。本文通过设计跟踪该项目,包括地震荷载,动力刚度,土-结构相互作用,混凝土和钢的疲劳度以及钻探井眼能力的分析。该项目的建设方面也包括在本文中。

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