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首页> 外文期刊>Journal of bridge engineering >Shear Live-Load Distribution Factors for I-Girder Bridges
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Shear Live-Load Distribution Factors for I-Girder Bridges

机译:工字梁桥的剪力荷载分布因子

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摘要

A full scale, single lane test bridge was used to evaluate a typical slab-on-girder bridge's response to shear. The results of the shear load test provided the means to evaluate the level of detail for a finite element model that is required to accurately replicate the behavior of bridges subject to shear loads. This finite element modeling scheme was then used to evaluate more than 200 finite element bridge models. The bridge models investigated the effects of girder spacing, span length, overhang distance and skew angle on the shear live-load distribution factor. The finite element shear distribution factors were compared with those calculated according to the American Association of State Highway and Transportation Officials load and resistance factor design (AASHTO LRFD) specifications. It was found that the AASHTO LRFD procedure accurately predicted the shear distribution factor for changes in girder spacing and span length. However, the LRFD shear distribution factor for the exterior girder was found to be unconservative for certain overhang distances and overly conservative for the interior girder for higher skew angles. Alternative equations are provided for the single and multilane exterior girder correction factor.
机译:完整的单车道试验桥​​用于评估典型的板梁桥对剪力的响应。剪力测试的结果为评估有限元模型的详细程度提供了一种手段,该模型可以精确地复制桥梁在剪力作用下的行为。然后,该有限元建模方案用于评估200多个有限元桥梁模型。桥梁模型研究了大梁间距,跨度,悬伸距离和偏斜角对剪切活荷载分布系数的影响。将有限元剪力分布因子与根据美国国家公路和运输官员协会荷载和阻力因子设计(AASHTO LRFD)规范计算得出的值进行比较。结果发现,AASHTO LRFD程序可以准确预测梁间距和跨度变化的剪切分布因子。但是,发现对于外悬梁的LRFD剪切分布因子在某些悬垂距离上是不保守的,而对于较大的倾斜角,对于内梁则过于保守。提供了单车道和多车道外梁校正因子的替代方程。

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