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首页> 外文期刊>Journal of Mechanical Science and Technology >Damage identification of a 2D frame structure using two-stage approach
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Damage identification of a 2D frame structure using two-stage approach

机译:双阶段方法损坏2D框架结构的损伤识别

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摘要

In this article, a two-stage damage identification approach is employed to detect the site and extent of multiple damage cases in a 2D frame structure. In the first stage, Damage locating vector (DLV) method based on a new indicator called EDS (Exponential decreased stress) is applied to localize the damaged elements. Next, the damage extents of suspected elements are quantified using two metaheuristic algorithms, Water evaporation optimization (WEO) and accelerated WEO. Numerical example consists of a 2D frame structure with two types of meshing elements, 35 and 105 frame elements. For every state, two multiple damage cases are tested in noisy condition. To compare performance of the two-stage method with one-stage optimization method, the studied cases are also run using these two metaheuristic algorithms. The results indicate that the two-stage approach is more effective than one-stage because the number of intact element detected as damaged one and computational errors for actual damaged elements in one-stage method are more while the two-stage approach spends a much shorter time.
机译:在本文中,采用两级损伤识别方法来检测2D框架结构中多损伤案例的现场和程度。在第一阶段,应用基于名为EDS(指数减小应力)的新指示符的损伤定位载体(DLV)方法以定位损坏的元素。接下来,使用两个成群质算法,水蒸发优化(WEO)和加速WEO量化疑似元素的损伤范围。数值示例包括具有两种类型的啮合元件,35和105帧元件的2D框架结构。对于每个状态,在嘈杂的情况下测试了两个多种损伤案例。要使用一阶段优化方法比较两阶段方法的性能,所研究的情况也使用这两个成群质算法运行。结果表明,两阶段方法比单级更有效,因为在两级方法中,检测到被检测到的完整元素的数量和实际损坏元素的计算误差是更短的时间。

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