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Reducing damages in structures during earthquake using energy dissipation devices

机译:使用能量耗散装置减少地震期间结构的损坏

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A computational algorithm of inelastic structural behavior is used to quantitatively calculate the plastic energy of moment-resisting framed structures. This algorithm uses the force analogy method to evaluate the structural response and energy in the inelastic domain subjected to earthquake excitations. The advantage of using force analogy method is that it directly gives a closed-form analytical equation to evaluate plastic energy due to inelastic deformation in the structure. Energy dissipation devices such as viscous dampers, viscoelastic dampers, and active control are then used to improve the structural performance by providing an alternative path of energy dissipation through the devices and therefore the plastic energy dissipation required in the structure will be reduced. Results show that these energy dissipation devices are very effective in dissipating control energy, and thereby reducing the plastic energy dissipation and damage in the structure.
机译:无弹性结构行为的计算算法用于定量计算力矩抵抗框架结构的塑性能量。该算法使用强制类比方法来评估抗震激励的非弹性域中的结构响应和能量。使用力类比方法的优点是它直接给出闭合形式的分析方程,以评估由于结构中的无弹性变形引起的塑性能量。然后,使用诸如粘性阻尼器,粘弹性阻尼器和主动控制的能量耗散装置来改善结构性能,通过提供通过器件的替代能量耗散的替代路径,因此将降低结构所需的塑料能量耗散。结果表明,这些能量耗散装置在耗散控制能量方面非常有效,从而降低了结构中的塑性能量耗散和损坏。

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