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Using viscous damper distribution to reduce multiple seismic responses of asymmetric structures

机译:使用粘性阻尼器分布减少非对称结构的多次地震响应

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The main contribution of this study is investigating the possibility of controlling both displacements and accelerations of asymmetric buildings simultaneously by using linear viscous dampers. The structures are single-storey systems with moment-resisting steel frames and one-way stiffness, strength and damping eccentricities. Linear non-classical modal and nonlinear time history analyses with different ground motions are performed on the models considering different values of eccentricities. Suitable distributions found using the Weak Torsional Balance concept which uses mean square values of lateral displacement or acceleration are compared with distributions found when considering maximum values. The results show that the changes in structural modal properties and different responses by damper distribution are considerable in some cases. Also some distributions are suggested to control lateral displacement, diaphragm torsion and lateral acceleration of the diaphragm.
机译:这项研究的主要贡献是研究使用线性粘性阻尼器同时控制非对称建筑物的位移和加速度的可能性。这些结构是单层系统,具有抗弯钢框架以及单向刚度,强度和阻尼偏心率。考虑偏心率值不同的模型,对具有不同地面运动的线性非经典模态和非线性时程进行了分析。将使用侧向位移或加速度的均方值的弱扭转平衡概念找到的合适分布与在考虑最大值时发现的分布进行比较。结果表明,在某些情况下,结构模态特性的变化和阻尼器分布的不同响应是相当大的。还建议了一些分布来控制横向位移,隔膜扭转和隔膜的横向加速度。

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