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Performance of two-dimensional analysis: Deteriorated metal culverts under surface live load

机译:二维分析的性能:表面活荷载下金属涵洞的劣化

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As buried infrastructure assets reach the end of their service lives, better methods to assess these assets are required in order to optimize infrastructure budgets and management programs. As a first step towards developing these more accurate methods, the results of four currently available culvert modelling approaches were compared with the results of experiments on a deteriorated culvert as well as two buried culverts (one with significant deterioration and poor backfill, and one with limited deterioration and well compacted backfill) subjected to simulated vehicle loading. Two finite element analysis programs were used: CANDE, a commonly used software package specifically for culverts, and ABAQUS, a more robust general use package. Three different live load spreading factors were used with these programs to determine which one most accurately modelled the three dimensional live loading effects in two dimensions. The capacity of the culverts was also estimated using the design equations given in the Canadian and American bridge design codes. All the finite element models were unable to capture the non-linear behaviour of the deteriorated culvert with poor backfill as well as both culverts at high surface loading due to the use of linear elastic models. CANDE was found to provide very poor estimates of culvert diameter change but good estimates of culvert performance for the culvert with limited deterioration and well compacted backfill. ABAQUS could be used to predict culvert diameter change and thrust force with good accuracy in the linear elastic region or provide an upper bound estimate depending on the surface load spreading model that was employed. Both the Canadian and American design code equations underestimated the thrust forces in the culverts, suggesting that these approaches could be unconservative.
机译:随着埋藏的基础设施资产的使用寿命到期,需要使用更好的方法来评估这些资产,以优化基础设施预算和管理计划。作为开发这些更精确方法的第一步,将四种当前可用的涵洞建模方法的结果与在退化的涵洞以及两个埋入涵洞上进行的实验结果进行了比较(其中一个涵洞严重恶化且回填不佳,而一个涵洞有限。老化和紧密压实的回填)受到模拟车辆载荷的影响。使用了两个有限元分析程序:CANDE,一个专门用于涵洞的常用软件包,以及ABAQUS,一个更强大的通用软件包。这些程序使用了三种不同的活荷载扩展因子,以确定哪一个模型可以最准确地模拟二维的三维活荷载效果。涵洞的承载力也使用加拿大和美国桥梁设计规范中给出的设计方程式进行估算。由于使用了线性弹性模型,所有有限元模型都无法捕获回填较差的退化涵洞以及在高表面载荷下两个涵洞的非线性行为。人们发现,CANDE不能很好地估计涵洞直径的变化,但是可以很好地估计涵洞的性能,而退化的程度有限,回填效果也很好。 ABAQUS可用于在线性弹性区域中以良好的精度预测涵洞直径变化和推力,或者根据所使用的表面载荷扩展模型提供上限估计。加拿大和美国的设计规范方程都低估了涵洞中的推力,这表明这些方法可能并不保守。

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