根据冲程能力研究最佳调谐质量阻尼器参数

Aylin Ece Kayabekir
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引用次数: 0

摘要

在大地震中,民用建筑可能会因频率与结构频率相近的振动而倒塌。因此,人们提出了建筑结构控制系统。这些系统可以是由电子设备控制的主动系统,也可以是由调谐机械系统控制的被动系统。被动式调谐质量阻尼器(TMD)包括质量、刚度元件和阻尼元件,可根据结构的频率进行调谐。由于随机振动下数学的复杂性,需要使用元启发式算法进行优化调整。在本研究中,通过 Jaya 算法对 TMD 进行了优化。对控制系统进行了优化,以实现结构位移最小化。此外,还限制了系统的冲程量。根据结构的最大位移,对归一化冲程的冲程能力系数在 0.5 至 4 之间的宽限制进行了研究。该研究是针对单自由度结构进行的,旨在得出一般性结论。结果表明,2.75 之后的行程限制并不影响性能和最佳参数。冲程限制值越小,最佳周期越明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of optimum tuned mass damper parameter according to stroke capacity
During major earthquakes, civil structures may collapse due to vibration that has a frequency close to the frequency content of the structure. Because of this, control systems have also been proposed for building structures. These systems can be active ones that are controlled by electronic devices or passive ones that are tuned mechanical systems. Passive tuned mass dampers (TMDs) include mass, stiffness element and damping element and these are tuned around the frequency of the structure. For optimum tuning and the complex nature of the mathematics under random vibrations, metaheuristic algorithms are needed to be used. In the presented study, TMDs are optimized via Jaya algorithm. The control system was optimized for displacement minimization of the structure. Additionally, the stroke amount of the system was limited. The stroke capacity factor was investigated for wide limits between 0.5 and 4 for normalized stroke according to the maximum displacement of the structure. The investigation was done for a single degree of freedom structure for a general conclusion. It is observed that the stroke limit did not affect performance and optimum parameters after 2.75. The small values of the stroke limit have significantly different optimum period.
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