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Damage Location And Assessment Along Structural Elements Using Damage Submatrices

机译:使用损伤子矩阵沿结构元素进行损伤定位和评估

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A new method to locate and determine the magnitude of damage, expressed as the loss of stiffness, along structural elements of buildings, called Damage Submatrices Method is presented. The method uses information related to the stiffness of both states of the structure: undamaged and damaged, utilizing iterative eigenvalue computations. The novelty of the method relies on its capability to identify damage in specific zones of structural elements depending on how the undamaged model of the structure was discretized. Another advantage of the proposed method is its convergence. This paper also contributes a new approach to simulate noise perturbing stiffness matrices. This technique can be useful for realistic damage detection investigations. Also, the proposed technique used to expand condensed damaged stiffness matrices, to global coordinates, may be useful for system identification projects. Two examples taken from the literature are studied involving limited modal measurements and noise effects to calibrate the method and corroborate its capability for damage assessment. Application of the proposed method to these structures corroborates its efficiency for identifying stiffness degradation of structural elements.
机译:提出了一种沿着建筑物的结构元素定位和确定破坏程度(表示为刚度损失)的新方法,称为破坏子矩阵方法。该方法利用迭代特征值计算,使用与结构两种状态(未损坏和损坏)的刚度有关的信息。该方法的新颖性取决于根据离散化未损坏的结构模型识别结构元素特定区域中损坏的能力。所提出的方法的另一个优点是其收敛性。本文还提供了一种新的方法来模拟噪声干扰刚度矩阵。此技术对于实际的损坏检测研究很有用。同样,用于将压缩的损坏刚度矩阵扩展到全局坐标的建议技术可能对系统识别项目很有用。研究了来自文献的两个例子,涉及有限的模态测量和噪声影响,以校准该方法并证实其损害评估的能力。提议的方法在这些结构上的应用证实了其识别结构元件刚度退化的效率。

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