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Building mass damper design based on optimum dynamic response control approach

机译:基于最佳动态响应控制方法的建筑质量阻尼器设计

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The building mass damper (BMD) design features the use of partial structural mass, instead of additional tuned mass, as an energy absorber. Therefore, it becomes more effective in dynamic response reduction compared to the conventional tuned mass damper (TMD) design with very limited added tuned mass. In this study, an optimum building mass damper (OBMD) design approach, namely optimum dynamic response control approach, based on a simplified 3-lumped-mass structure model is proposed to enhance the seismic performances of both the superstructure (or tuned mass) and substructure (or primary structure) respectively above and below the control layer. A series of shaking table tests on one bare and two OBMD specimens were conducted to experimentally verify the efficacy of the proposed OBMD design approach. To further demonstrate the advantage of the OBMD design conditionally over other passive control approaches, the seismic responses of the same structure model but respectively designed with a mid-story seismic isolation (MSI) system and additional energy dissipation devices are also numerically analyzed and compared. It is found that the OBMD design can reveal a better seismic performance than the energy dissipation design. More importantly, it can have a comparable and even superior seismic performance to the MSI design especially when the structure model has a medium or long period of vibration.
机译:建筑质量阻尼器(BMD)设计的特点是使用部分结构质量而不是附加的调谐质量作为能量吸收器。因此,与增加了非常有限的调谐质量的传统调谐质量阻尼器(TMD)设计相比,它在降低动态响应方面更加有效。在这项研究中,提出了一种基于简化的3集总质量结构模型的最佳建筑质量阻尼器(OBMD)设计方法,即最佳动态响应控制方法,以提高上部结构(或调谐质量)和抗震性能。控制层上方和下方的子结构(或主要结构)。对一个裸露的和两个OBMD标本进行了一系列的振动台测试,以通过实验验证了所提出的OBMD设计方法的有效性。为了进一步证明OBMD设计在条件上优于其他被动控制方法的优势,还对相同结构模型但分别设计为中层隔震(MSI)系统和附加耗能装置的地震响应进行了数值分析和比较。发现与能量消散设计相比,OBMD设计可以显示出更好的抗震性能。更重要的是,它可以具有与MSI设计相当甚至更好的抗震性能,尤其是当结构模型具有中等或长期振动时。

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