Cable-Stayed Bridge Loads Caused by Traffic Congestion on the Deck Measured with Bridge Monitoring System

C. Machelski, M. Hildebrand
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Abstract

Structural safety of a bridge depends, among other things, on the number of vehicles passing on its deck, their weights and distribution of loads to their axes. A large number of vehicles can accumulate on the bridge in a controlled state, i.e., during an acceptance test including load testing, and during traffic congestion on the bridge, which is a fortuitous event addressed in this paper. The paper deals with the analysis of load intensity on one bridge carriageway when it is fully and randomly filled during traffic congestion. The influence functions of the forces in the cables are used to determine the effects of loads exerted by the vehicles moving at very low speed. Effects of such loads are studied considering an exemplary cable-stayed bridge. Since the measurement basis was limited, the iterative algorithm was used. It consists in shortening the girder sections under analysis to the area appropriate for determining the load in each successive step of iteration. Ineffectiveness of the traditional algorithm, where the determined system of equations is resolved, is an important premise for using such algorithm. The results of numerical analysis show that the load intensity caused by traffic congestion is relatively high. It has been demonstrated that the matrix method may be successfully used to determine the real load of bridges on the basis of selected parameters measured in the bridge structure, also for complex scheme bridges, including the cable-stayed bridges.
用桥梁监测系统测量斜拉桥桥面交通拥挤引起的荷载
桥梁的结构安全,除其他外,取决于通过桥面的车辆数量,车辆的重量和轴上荷载的分布。在可控状态下,即在包括荷载试验在内的验收试验期间,以及在桥梁上发生交通拥堵时,大量车辆会积聚在桥上,这是本文所要解决的偶然事件。本文研究了某桥梁行车道在交通拥堵情况下满填和随机填时的荷载强度分析。钢索受力的影响函数用于确定车辆低速行驶时所施加的载荷的影响。以一座典型斜拉桥为例,研究了这种荷载的影响。由于测量基础有限,采用迭代算法。它包括在迭代的每个连续步骤中,将被分析的梁截面缩短到适合确定荷载的区域。传统算法在求解确定方程组时的无效性是使用该算法的重要前提。数值分析结果表明,交通拥堵引起的负荷强度较大。结果表明,对于包括斜拉桥在内的复杂方案桥梁,矩阵法可以成功地根据桥梁结构中测量的选定参数来确定桥梁的实际荷载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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