首页> 外文会议>Proceedings of the 13th International Symposium on Structural Engineering >STUDY OF STRUCTURAL DAMAGE IDENTIFICATION BASED ON THE PROPORTIONAL FLEXIBILITY MATRIX AND IMPROVED MODAL CURVATURE METHOD
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STUDY OF STRUCTURAL DAMAGE IDENTIFICATION BASED ON THE PROPORTIONAL FLEXIBILITY MATRIX AND IMPROVED MODAL CURVATURE METHOD

机译:基于比例弹性矩阵和改进模态弯曲法的结构损伤识别研究

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According to the commonly used modal curvature methods that take advantage of the diagonal elements of flexibility matrix to identify the damage in the structural damage identification at present,and based on the proportional flexibility matrix,an improved modal curvature method by using a new index called average flexibility difference is presented to identify the structural damages.Compared with that the existed flexibility modal curvature methods can not judge the damage of the start or end element in the structure,the improved modal curvature method can exactly judge whether the start or end element was damaged including other elements by using the diagonal elements of flexibility matrix.In the method,first of all,the first several order vibration mode and frequency from the structural vibration response are gotten to build the structural proportional flexibility matrix of the undamaged and damaged.Secondly,taking advantage of the diagonal elements of the undamaged proportional flexibility matrix,the average flexibility difference was calculated.Then,a new flexibility matrix was build by combining the average flexibility difference with the damaged proportional flexibility matrix.In the last,taking advantage of the pre-existing modal curvature method by using the diagonal elements of flexibility matrix,the structural damage would be identified.The results of numerical simulation damage identification for a ten layers framework shows that the improved method can fast and easily detect the damage of the start and end element of structures by using the improved modal curvature method.This method also can identify the location of damages and easy be used in the engineering structural damage identifications.
机译:根据目前利用柔度矩阵对角线元素识别结构损伤的常用模态曲率方法,并基于比例柔度矩阵,采用一种称为平均值的新指标,改进了模态曲率方法。与已有的柔性模态曲率方法不能判断结构中起始或结束单元的损伤相比,改进的模态曲率方法可以准确地判断起始或结束单元是否损坏。该方法首先从结构振动响应中获得一阶振动模式和频率,以建立完好无损的结构比例柔性矩阵。利用未损坏的比例飞行器的对角线元素计算出平均柔度矩阵,然后将平均柔度差与破损的比例柔度矩阵相结合,建立新的柔度矩阵。最后,利用对角线元素,利用已有的模态曲率法十层框架的数值模拟损伤识别结果表明,改进的方法可以通过改进的模态曲率方法快速,轻松地检测结构的始端和端部元素的损伤。该方法还可以识别损伤的位置,易于在工程结构损伤识别中使用。

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