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Optimum design and application of non-traditional tuned mass damper toward seismic response control with experimental test verification

机译:非传统调谐质量阻尼器在地震响应控制中的优化设计与应用

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A variant type of tuned mass damper (TMD) termed as non-traditional TMD (NTTMD)' is recently proposed. Mainly focusing on the employment of TMD for seismic response control, especially for base-isolated or high-rise structures, this paper aims to derive design formulae of NTTMDs based on two methodologies with different targets. One is the fixed points theory with the performance index set as the maximum magnitude of the frequency response function of the relative displacement of the primary structure with respect to the ground acceleration, and the other is the stability maximization criterion (SMC) to make the free vibration of the primary structure decay in the minimum duration. Such optimally designed NTTMDs are compared with traditional TMDs by conducting both numerical simulations and experiments. The optimum-designed NTTMDs are demonstrated to be more effective than the optimum-designed traditional TMDs, with smaller stroke length required. In particular, the effectiveness of the TMDs combined with a base-isolated structure is investigated by small-scale model experimental tests subjected to a time scaled long period impulsive excitation, and it is demonstrated that the SMC-based NTTMD can suppress structural free vibration responses in the minimum duration and requires much smaller accommodation space. Additionally, a small-scale shaking table experiment on a high-rise bending model attached with a SMC-based NTTMD is conducted. This study indicates that NTTMD has a high potential to apply to seismic response control or retrofit of structures such as base-isolated or central column-integrated high-rise structures even if only a limited space is available for accommodating TMDs. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:最近提出了一种变型的调谐质量阻尼器(TMD),称为非传统TMD(NTTMD)。本文主要着眼于将TMD用于地震响应控制,尤其是对于基础隔离或高层结构的地震响应控制,本文旨在基于目标不同的两种方法推导NTTMD的设计公式。一个是不动点理论,其性能指标设置为主要结构相对于地面加速度的相对位移的频率响应函数的最大幅度,另一个是使自由度最大化的稳定性最大化准则(SMC)。初级结构的振动在最小持续时间内衰减。通过进行数值模拟和实验,将这种优化设计的NTTMD与传统TMD进行比较。优化设计的NTTMD被证明比优化设计的传统TMD更有效,所需冲程长度更短。尤其是,通过对时间尺度长周期脉冲激励进行小规模的模型试验,研究了与基础隔震结构相结合的TMD的有效性,并证明了基于SMC的NTTMD能够抑制结构自由振动响应在最短的时间内,并需要更小的容纳空间。此外,还对基于SMC的NTTMD的高层弯曲模型进行了小型振动台实验。这项研究表明,即使只有有限的空间可容纳TMD,NTTMD仍具有很大的潜力可用于地震响应控制或结构的改造,例如基础隔离或中央柱集成的高层结构。版权所有(c)2015 John Wiley&Sons,Ltd.

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