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Lifetime maximum load effects on short-span bridges subject to growing traffic volumes

机译:随着流量的增长,终生最大荷载对短跨桥的影响

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摘要

This paper investigates the phenomenon of growth in truck volumes during the lifetime of a bridge and the influence of that growth on characteristic maximum load effects. The study uses Weigh-in-Motion (WIM) data from the Netherlands to calibrate Monte Carlo simulation of load effects on a range of bridge spans. For short spans, the distribution of 25-day maximum data is Weibull. As span increases, a better fit is obtained with a mixture that separates low loader vehicles from all others. Growth is addressed by assuming constant, linear or quadratic variations in the properties of the best-fit Generalized Extreme Value distributions. The principle of parsimony is used to select the most appropriate fit. Growth is shown to change the nature of the trend on probability paper, shifting the curves to the right. While the influence of growth is relatively modest, fitting non-stationary data to a stationary curve gives erroneous results.
机译:本文研究了桥梁使用寿命期间卡车体积增长的现象,以及这种增长对特征性最大载荷效应的影响。这项研究使用了来自荷兰的动态称重(WIM)数据来校准蒙特卡洛模拟在一系列桥梁跨度上的载荷效应。对于短跨度,最长25天的数据分布为Weibull。随着跨度的增加,将低装载机车辆与所有其他车辆分开的混合物可获得更好的配合。通过假设最适合的广义极值分布的属性恒定,线性或二次方变化来解决增长问题。简约原则用于选择最合适的拟合。增长显示出改变概率纸上趋势的性质,使曲线向右移动。尽管增长的影响相对较小,但将非平稳数据拟合到平稳曲线会产生错误的结果。

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