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Earthquake response of solitary slender freestanding intake towers

机译:细长的独立式进水塔的地震反应

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Earthquake response of solitary slender intake towers is investigated considering an idealized hollow intake tower with its circular footing submerged in water. The tower is studied in anchored (fixed base) and unanchored (freestanding) states placed on undeformable soil foundation. The water-structure interaction is modeled by the Eulerian-Lagrangian approach, using the pressure-based elements for the water and the displacement-based elements for the structure. The only source of nonlinearity is the contact at the base joint between the tower's footing and the ground. This contact is modeled using Coulomb friction model which allows the tower to slide and uplift. The system is three-dimensionally analyzed using finite element method under static and dynamic earthquake loads. A detailed parametric study is conducted to assess the importance of system characteristics including surrounding and inside water levels, ratio of tower height to footing radius, base joint friction coefficient, water compressibility, footing flexibility, and vertical ground motion. (C) 2016 Published by Elsevier Ltd.
机译:考虑圆形基座浸入水中的理想化空心进水塔,研究了单根细长进水塔的地震反应。对该塔进行了锚定(固定基础)和未锚定(独立)状态的研究,这些状态都放置在不可变形的土壤基础上。水-结构相互作用通过欧拉-拉格朗日方法建模,对水使用基于压力的元素,对结构使用基于位移的元素。非线性的唯一来源是塔基与地面之间的基础接点处的接触。该接触使用库仑摩擦模型建模,该模型允许塔架滑动和升起。在静态和动态地震载荷下,使用有限元方法对该系统进行了三维分析。进行了详细的参数研究,以评估系统特性的重要性,包括周围和内部水位,塔高与支脚半径的比值,基础接缝摩擦系数,水可压缩性,支脚柔性和垂直地面运动。 (C)2016由Elsevier Ltd.出版

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