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Dynamic analysis of seismically excited flexible truss tower with scissor-jack dampers

机译:剪叉式阻尼器地震激励柔性桁架塔的动力分析

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In the proposed work, numerical simulations are conducted to investigate scissor-jack dampers for controlling vibrations in a seismically excited flexible truss tower. For the scissor-jack damper, new equations are developed to model the amplification factor that account for large deformations of the damper assembly. The equations are validated using computer-aided design and are used to investigate the influence of vertical deformations on scissor-jack damper amplification. Then, seismic analysis is carried out for scissor-jack dampers installed on a 3D flexible truss tower. To reduce the computational effort, a bi-model method is employed to represent the 3D truss tower as a dynamically equivalent 2D model. To describe the interaction between the structure and scissor-jack dampers, the displacement-dependent amplification factors of the scissor-jack devices and the corresponding damper forces are calculated at each time step. The response of the tower with scissor-jack damper systems is simulated for a range of damping and four major earthquakes and time histories of the displacement and absolute acceleration at each level of the tower are obtained. Results indicate that the system is effective in reducing both the displacement and absolute acceleration response of the tower without exceeding damper stroke capacity in most cases, but that damping level and earthquake intensity are important factors in the consideration of scissor-jack dampers for flexible structures subject to seismic loads. Copyright © 2011 John Wiley & Sons, Ltd.
机译:在拟议的工作中,进行了数值模拟,以研究剪式千斤顶阻尼器,以控制地震激励的柔性桁架塔架中的振动。对于剪式千斤顶减震器,开发了新的方程式来模拟放大系数,该放大系数说明了减震器组件的较大变形。该方程使用计算机辅助设计进行了验证,并用于研究竖向变形对剪式千斤顶阻尼器放大的影响。然后,对安装在3D柔性桁架塔架上的剪式千斤顶阻尼器进行地震分析。为了减少计算量,采用双模型方法将3D桁架塔表示为动态等效的2D模型。为了描述结构与剪式千斤顶减振器之间的相互作用,在每个时间步长计算剪式千斤顶装置的位移相关放大系数和相应的减振器力。模拟了剪式千斤顶阻尼器系统对一定范围的阻尼的响应,并获得了四次大地震,并获得了塔各个位置的位移和绝对加速度的时间历程。结果表明,该系统在大多数情况下都可有效地降低塔架的位移和绝对加速度响应,而不会超过减震器的行程能力,但在考虑挠性结构的剪叉式减震器时,减震水平和地震强度是重要因素承受地震载荷。版权所有©2011 John Wiley&Sons,Ltd.

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