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Vibration Based Wind Turbine Tower Foundation Design Utilizing Soil-Foundation-Structure Interaction

机译:利用土-基础-结构相互作用的基于振动的风力发电机塔基础设计

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This is a case study of multiple wind turbine towers located in different villages in Alaska where severe arctic weather conditions exist. Initially, a Reinforced Concrete (RC) mat foundation was utilized to provide vertical and lateral support. Where soil conditions required it, a pile foundation solution was devised utilizing a 30" thick RC mat containing an embedded steel grillage of W18 beams supported by 20"-24" grouted or un-grouted piles. The mixing and casting of concrete in-situ has become the major source of cost and difficulty of construction at these remote Alaskan sites. An all-steel foundation was proposed for faster installation and lower cost, but was found to impact the natural frequencies of the structural system by significantly softening the foundation system. The tower-foundation support structure thus became near-resonant with the operational frequencies of the wind turbine leading to a likelihood of structural instability or even collapse. A detailed 3D Finite-Element model of the original tower-foundation-pile system with RC foundation was created using SAP2000. Soil springs were included in the model based on soil properties from the geotechnical consultant.The natural frequency from the model was verified against the tower manufacturer analytical and the experimental values. Where piles were used, numerous iterations were carried out to eliminate the need for the RC and optimize the design. An optimized design was achieved with enough separation between the natural and operational frequencies to prevent damage to the structural system eliminating the need for any RC encasement of the steel or grouting of the piles.
机译:这是对位于阿拉斯加不同村庄的多个风力涡轮机塔的案例研究,那里存在严重的北极天气条件。最初,钢筋混凝土(RC)垫基础用于提供垂直和横向支撑。在需要土壤条件的地方,采用30“厚的RC垫子设计桩基解决方案,该垫子包含W18梁的嵌入式钢格架,由20” -24“灌浆或未灌浆的桩支撑。现浇混凝土的混合和浇铸已成为这些阿拉斯加偏远地区成本和施工难度的主要来源,提出了一种全钢基础以加快安装速度并降低成本,但发现该基础会显着软化基础系统,从而影响结构系统的固有频率。因此,塔基础支撑结构变得与风力发电机的工作频率接近共振,从而导致结构不稳定甚至崩溃的可能性,建立了带有RC基础的原始塔基础桩系统的详细3D有限元模型。该模型是使用SAP2000创建的,根据岩土工程顾​​问的土壤特性将土壤弹簧包括在模型中。模型的固有频率为veri。反对塔架制造商的分析和实验值。在使用桩的地方,进行了多次迭代以消除对RC的需要并优化设计。实现了优化设计,在固有频率和工作频率之间有足够的间隔,以防止损坏结构系统,从而无需对钢筋进行任何RC围护或对桩进行灌浆。

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