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Earthquake response reduction of mid-story isolated system due to semi-active control using magnetorheological rotary inertia mass damper

机译:磁流变旋转惯性质量阻尼器的半主动控制导致中层隔震系统的地震响应降低

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The dynamic characteristics of mid-story isolated buildings and seismic response reduction due to a semi-active control system were investigated using a three-lumped-mass model that simplified the sixteen story building with an isolation layer in the sixth story. A semi-active control method using a rotary inertia mass damper filled with magnetorheological fluid (MR fluid) was proposed. The damper shows both mass amplification effect due to rotational inertia and variable damping effect due to the MR fluid. The damping force is controlled by the strength of the magnetic field that is applied to the MR fluid. It is determined by using the electric current, which is calculated by the proposed semi-active control method based on the velocity of the isolation layer relative to the layer just underneath it. Real-time hybrid tests using an actual damper and simulations using a building model were conducted to check the damper model; the test results were in good agreement with the simulation results. The simulation results suggest that the response displacement of the structure above the isolation layer is significantly reduced, without increasing the response acceleration of the entire structure against near-fault pulse and long-period ground motions. The proposed semi-active control using an MR rotary inertia mass damper was confirmed to be effective for mid-story isolated buildings.
机译:使用三集总质量模型研究了中层隔离建筑物的动态特性以及由于半主动控制系统导致的地震响应降低,该模型通过简化第六层中的隔离层简化了十六层建筑物。提出了一种使用充满磁流变流体(MR流体)的旋转惯性质量阻尼器的半主动控制方法。由于旋转惯性,阻尼器既显示了质量放大效果,又由于MR流体显示了可变的阻尼效果。阻尼力由施加到MR流体的磁场强度控制。它是通过使用电流来确定的,该电流是通过提出的半主动控制方法根据隔离层相对于隔离层下面的速度计算得出的。使用实际阻尼器进行实时混合测试,并使用建筑模型进行模拟,以检查阻尼器模型。测试结果与仿真结果吻合良好。仿真结果表明,隔离层上方结构的响应位移显着减小,而没有增加整个结构对近断层脉冲和长时间地面运动的响应加速度。使用MR旋转惯性质量阻尼器的建议的半主动控制已被证实对中层隔震建筑有效。

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