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A Novel Reduced Model for Damage Detection of Frame Structures

机译:框架结构损伤检测的新型简化模型

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When performing damage detection for frame buildings, a shear structure model is frequently employed to model the dynamic responses of the frame. The estimated parameters of the shear model are then utilized to determine the damage status of the frame. However, it was pointed out in many studies that, due to the existence of modeling error, the shear model cannot very well represent the true dynamic behavior of the frame; hence, the damage detection results are often inaccurate. In this paper, a novel reduced model of frame structures is proposed for the damage detection of frame structures, which has two important characteristics: 1) compared with shear model, the new model can reflect the true interstory shear forces of the frame buildings, thereby significantly reducing the modeling error and improving damage detection accuracy; 2) the parameters of the new model have a clear relation with the physical parameters of the frame, facilitating using the estimated parameters of the new model to determine the damage status of the frame. Moreover, based on this new model, an iterative substructure identification method is proposed to identify the parameters of frame structures. Finally, a numerical example of a frame structure is utilized to demonstrate the effectiveness of the new model. The results show that using the new model greatly improve the accuracy of the damage detection of the frame structure, compared with using a shear structure model.
机译:在对框架建筑物进行损坏检测时,经常采用剪力结构模型对框架的动力响应进行建模。然后,利用剪切模型的估计参数确定框架的损坏状态。但是,在许多研究中指出,由于存在建模误差,所以剪切模型不能很好地表示框架的真实动态行为。因此,损坏检测结果通常是不准确的。本文提出了一种新颖的框架结构简化模型,用于框架结构的损伤检测。该模型具有两个重要特征:1)与剪切模型相比,新模型能够反映框架建筑物的真实层间剪力,因此大大减少了建模误差,提高了破损检测的准确性; 2)新模型的参数与框架的物理参数有明确的关系,有助于使用新模型的估计参数确定框架的损坏状态。此外,基于该新模型,提出了一种迭代子结构识别方法来识别框架结构的参数。最后,利用框架结构的数值示例来证明新模型的有效性。结果表明,与使用剪切结构模型相比,使用新模型大大提高了框架结构损伤检测的准确性。

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