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Numerical investigations of soil plugging effect inside large-diameter, open-ended wind turbine monopiles driven by vibratory hammers

机译:振动锤驱动的大直径,开放式风力涡轮机型号土壤堵漏效果的数值研究

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This study established a Couple Eulerian-Lagrange model to simulate monopile vibratory penetration for the investigation of soil plugging effect during high-frequency penetration of monopiles for wind turbine. Simulation analysis is focused particularly on soil plugging effect of a large diameter monopile during vibratory penetration into sand, clay, or layered soil. The results of the numerical simulation show that soil plugging effect is unlikely to occur during monopile penetration into the clay soil, while partial soil plugging may occur during the sand penetration. Penetration resistance at the pile toe is transferred to the radial stress around the pile wall. At a critical point penetration process, internal shaft friction becomes larger than external shaft friction. Moreover, radial pressure factors increase during partial soil plugging effect. For layered soil, the topsoil not only has great influence on the soil plugging effect, but also affects shaft friction in the subsoil during monopile penetration.
机译:本研究建立了一对欧拉拉格兰造型模型,模拟了纪念振动渗透,用于调查风力涡轮机高频渗透过程中的土壤堵漏效果。仿真分析专注于振动渗透到砂,粘土或分层土壤中的大直径单披露的土壤堵塞效果。数值模拟结果表明,在粘土土壤中的渗透过程中,土壤堵塞效果不太可能发生,而在砂渗透过程中可能发生部分土壤堵塞。桩脚趾处的穿透性转移到桩壁周围的径向应力。在临界点穿透过程中,内轴摩擦变得大于外轴摩擦。此外,径向压力因子在部分土壤堵塞效果期间增加。对于分层土壤,表土不仅对土壤堵塞效果产生了很大影响,而且影响替换渗透过程中底层的轴摩擦。

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