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Wind-Induced Fatigue Analysis of High-Rise Steel Structures Using Equivalent Structural Stress Method

机译:等效结构应力法分析高层钢结构的风致疲劳

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Welded beam-to-column connections of high-rise steel structures are susceptive to fatigue damage under wind loading. However, most fatigue assessments in the field of civil engineering are mainly based on nominal stress or hot spot stress theories, which has the disadvantage of dependence on the meshing styles and massive curves selected. To address this problem, in this paper, the equivalent structural stress method with advantages of mesh-insensitive quality and capability of unifying different stress-life curves (S-N curves) into one is introduced to the wind-induced fatigue assessment of a large-scale complicated high-rise steel structure. The multi-scale finite element model is established and the corresponding wind loading is simulated. Fatigue life assessments using equivalent structural stress method, hot spot stress method and nominal stress method are performed, and the results are verified and comparisons are made. The mesh-insensitive quality is also verified. The results show that the lateral weld toe of the butt weld connecting the beam flange plate and the column is the location where fatigue damage most likely happens. Nominal stress method considers fatigue assessment of welds in a more global way by averaging all the stress on the weld section while in equivalent structural stress method and hot spot method local stress concentration can be taken into account more precisely.
机译:高层钢结构的梁到柱焊接连接易受风荷载作用下的疲劳破坏。然而,在土木工程领域中,大多数疲劳评估主要基于名义应力或热点应力理论,这具有依赖于网格划分方式和所选择的块状曲线的缺点。为了解决这个问题,本文将等效网格结构应力方法具有网格不敏感的质量,并且能够将不同的应力-寿命曲线(SN曲线)统一为一个的方法,用于大规模的风致疲劳评估中。复杂的高层钢结构。建立了多尺度有限元模型,并模拟了相应的风荷载。采用等效结构应力法,热点应力法和标称应力法对疲劳寿命进行了评估,并验证了结果并进行了比较。网格不敏感的质量也得到了验证。结果表明,连接梁翼缘板和柱的对接焊缝的横向焊趾是最可能发生疲劳损伤的位置。公称应力法通过对焊缝截面上的所有应力求平均,以更全面的方式考虑焊缝的疲劳评估,而在等效结构应力法和热点法中,可以更精确地考虑局部应力集中。

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