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Experimental testing of a large 9-story structure equipped with multiple nonlinear energy sinks subjected to an impulsive loading

机译:大型9层结构的实验测试,配备了多个非线性能量水槽经受冲动负载的

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Building structures can be critically affected by impulsive loads such as blasts, collisions, gusts, and pulse dominated earthquakes. The addition of nonlinear energy sinks (NESs) in buildings has been proposed as a means to rapidly and passively dissipate the energy in a system exposed to this type of loading. This rapid dissipation occurs because the essential nonlinearity of the NES allows it to resonate with any mode of the structure and engage in targeted energy transfer, the nearly oneway transfer of energy to the NES where it is locally dissipated. Additionally, the NES couples the modes of the structure and facilitates the transfer of energy from the lower modes of the structure to the higher modes, where it can be dissipated at a reduced time scale. In this study the experimental performance of a system of multiple NESs in a large 9-story test structure is discussed. Two different types of NESs are used, each of which employ a different type of restoring force; one type of NES utilizes a smooth restoring force that is roughly cubic, while the other utilizes a linear restoring force coupled with one-sided vibro-impacts. To load this system, an impulse-like ground motion is applied via a large shake table. The results of this study show that the system of NESs greatly improves the performance of the structure across a wide range of impulse amplitudes by reducing and very rapidly attenuating its response.
机译:建筑结构可以受到冲动的载荷,例如爆炸,碰撞,阵风和脉冲主导地震的影响。已经提出了在建筑物中添加非线性能量水槽(NESS)作为一种迅速和被动地将其暴露于这种装载的系统中的能量的装置。发生这种快速耗散,因为NE的基本非线性允许其与任何结构模式共振,并且接合有针对性的能量转移,其几乎单一的能量将能量转移到局部散发的NE。另外,NES耦合结构的模式,并便于将能量从结构的较低模式传递到更高的模式,在那里它可以以减小的时间尺度散发。在本研究中,讨论了在大型9层测试结构中多次NES系统的实验性能。使用两种不同类型的NES,每个类型采用不同类型的恢复力;一种类型的NE利用大致立方体的平滑恢复力,而另一个用于与单侧振动冲击耦合的线性恢复力。为了加载该系统,通过大摇动台施加脉冲状地面运动。该研究的结果表明,通过减少和非常迅速衰减其响应,NESS系统大大提高了各种脉冲幅度的结构的性能。

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