钢筋混凝土框架结构模型动力识别试验研究

EXPERIMENTAL STUDY ON DYNAMIC IDENTIFICATION OF REINFORCED CONCRETE FRAME STRUCTURE

  • 摘要: 通过随机采样方式获取混凝土框架模型各层的地脉动加速度信号,采用虚拟响应提取技术较好的剔除了地脉动信号中的高频随机噪声和低频趋势噪声。采用积分算子变换法重构了变换空间内的位移、速度和加速度响应信号。在地脉动激励未知的前提下,首先利用1层―4层的响应信号,在变换空间内通过时域反演的方法识别出框架模型2层―4层的刚度、阻尼参数。然后利用结构的基频信息,通过求解特征值反问题得出底层的刚度参数。识别结果与D值法计算的层刚度参数值基本吻合。

     

    Abstract: The random seismic acceleration signals of four floors of a reinforced concrete frame structure model are sampled, whose random noise of high frequencies and trend noise of low frequencies are eliminated efficiently by the de-noising method based on virtual response information. Using integral operator transform, the displacement, velocity and acceleration signals in transform space of the four floors are obtained. With these signals, the stiffness and damping parameters of upper three floors of frame structure models are identified by the inversion arithmetic in the time domain though no information of the seismic excitation is known. Utilizing the information of the first order frequency, the ground floor stiffness is identified by solving an inversion eigenvalue problem. The identification results of stiffness parameters tally with the numerical results by D-value method on the whole.

     

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