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An experimental study on semi-active seismic response control of a large-span building on top of ship lift towers

机译:船舶升降塔顶部大跨度建筑物半主动地震响应控制的实验研究

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摘要

A vertical ship lift under earthquake excitation may suffer from a violent whipping effect due to the sudden change of building lateral stiffness at the top of ship lift towers. This paper presents an experimental investigation to explore the validity of using a magnetorheological (MR) isolation system to prevent the whipping effect manipulated by neuro-fuzzy control algorithm. The two-story building was constructed as a ship lift model, in which the first story was much stiffer than the second story and the plates of the second story were divided into two mass pieces. MR isolation systems were used to link those two mass pieces. The dynamic characteristics of the model with rigid connection and with only seismic isolator connection were first identified. The models with those two connections and with MR isolation system connection were then tested under the scaled Three Gorge artificial ground motion and the scaled El Centro 1940 north-south ground motion. Finally, the seismic responses of the ship lift model were recalculated with the modified structural parameters through measured natural frequencies and were compared with the experimental seismic responses. The experimental results show that an MR isolation system manipulated by neuro-fuzzy control algorithm can achieve a significant reduction in seismic whipping effect on the building model. The comparison consequences indicate that the theoretical simulation results are accurately consistent with the experimental results.
机译:在地震激励下的垂直升船机可能会受到猛烈的鞭打作用,这是由于升船机塔顶部的建筑物侧向刚度突然变化所致。本文提出了一项实验研究,以探索使用磁流变(MR)隔离系统防止神经模糊控制算法操纵鞭打效应的有效性。这座两层楼的建筑是按升船模型建造的,其中第一个楼层比第二个楼层要坚固得多,而第二个楼层的板块则分为两个大块。 MR隔离系统用于链接这两个质量块。首先确定了具有刚性连接和仅具有地震隔离器连接的模型的动力学特性。然后在缩放的“三峡”人工地面运动和缩放的“ El Centro 1940”南北地面运动下测试了具有这两个连接和MR隔离系统连接的模型。最后,通过测得的固有频率,用修改后的结构参数重新计算升船模型的地震响应,并将其与实验地震响应进行比较。实验结果表明,通过神经模糊控制算法操纵的MR隔离系统可以显着降低地震鞭打对建筑模型的影响。比较结果表明,理论仿真结果与实验结果准确吻合。

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