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Nondestructive damage detection by simultaneous identification of stiffness and damping

机译:通过同时识别刚度和阻尼来无损检测损坏

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摘要

The objective of this study is to develop a nondestructive damage evaluation methodology that can identify simultaneously both stiffness and damping changes in a structure. Two approaches are used to meet the stated objectives. First, a method is developed on the basis of the conservation of total energy; second, the other method utilizes the acceleration-structural parameters (stiffness and damping) sensitivities. The total energy in a system consists of the sum of the kinetic energy, the potential energy, and the dissipated energy. In the second approach, a baseline structure is first identified. A baseline structure is defined to be a structural system having a similar dynamic response to the existing structure with no damage. In this study, natural frequencies and modal damping values are used to identify the baseline structure.;The performance of the developed methodology is validated using several numerical experiments; Two classes of structures are considered here: (1) a high-rise building modeled as shear beams and (2) a two-span continuous beam structure. In the shear beam model of the structure, the damping damage is simulated by increasing the Newtonian dash pot constant which models the dissipation at the damaged story. For the two-span continuous beam structure, it is assumed that damping of the undamaged structure can be modeled using a proportional damping matrix. The damping matrix of the damaged structure is modeled as the combination of a proportional damping matrix of the undamaged structure and a stiffness proportional damping matrix of the damaged element.;Three damage cases are investigated for each of the two structures considered here. Only one element experiences damping damage for the first damage scenario. In the second damage scenario, both stiffness damage and damping damage are simulated with different severities in one element of the model. In the third damage scenario, two elements are simulated with stiffness damage and damping damage, to verify whether or not the developed methodology works for multi-damage cases. The proposed method is modified to use mode shapes and the modified proposed method is applied to experimental data to identify stiffness damage in a R/C structure.
机译:这项研究的目的是开发一种非破坏性损伤评估方法,该方法可以同时识别结构的刚度和阻尼变化。有两种方法可用于达到规定的目标。首先,在节约总能量的基础上发展了一种方法。其次,另一种方法利用了加速度结构参数(刚度和阻尼)的敏感性。系统中的总能量由动能,势能和耗散能之和组成。在第二种方法中,首先确定基线结构。基准结构定义为对现有结构具有类似动态响应且无损坏的结构系统。在这项研究中,使用固有频率和模态阻尼值来识别基线结构。这里考虑两类结构:(1)建模为剪力梁的高层建筑物,以及(2)两跨连续梁结构。在结构的剪力梁模型中,通过增加牛顿缓冲罐常数来模拟阻尼损伤,该常数模拟了受损层的耗散。对于两跨连续梁结构,假设可以使用比例阻尼矩阵对未损坏结构的阻尼进行建模。将受损结构的阻尼矩阵建模为未受损结构的比例阻尼矩阵和受损元素的刚度比例阻尼矩阵的组合。;对于此处考虑的两种结构,分别研究了三种破坏情况。在第一个损伤场景中,只有一个元素会受到阻尼损伤。在第二种损坏情况下,在模型的一个元素中以不同的严重程度模拟了刚度损伤和阻尼损伤。在第三个损坏场景中,模拟了两个具有刚度损坏和阻尼损坏的元素,以验证所开发的方法是否适用于多损伤情况。将提出的方法修改为使用模式形状,并将修改后的提出的方法应用于实验数据以识别R / C结构中的刚度损伤。

著录项

  • 作者

    Hyung, Sang Su.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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