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Moving Axle Load From Multi-Span Continuous Bridge: Laboratory Study

弯矩 结构工程 跨度(工程) 力矩(物理) 梁(结构) 应变计 影响线 弯曲 移动荷载 桥(图论) 抗弯刚度 工程类 中性轴 有限元法 物理 医学 经典力学 内科学
作者
Tommy H.T. Chan,Demeke B. Ashebo
出处
期刊:Journal of Vibration and Acoustics 卷期号:128 (4): 521-526 被引量:29
标识
DOI:10.1115/1.2202154
摘要

Laboratory study on the identification of moving vehicle axle loads on a multi-span continuous bridge from the measured bending moment responses is presented. A bridge-vehicle system model was fabricated in the laboratory. The bridge was modeled as a three span continuous beam and the car was modeled as a vehicle model with two-axle loads. A number of strain gauges were adhered to the bottom surface of the beam to measure the bending moment responses. Using measured bending moment responses as an input, the corresponding inverse problem was solved to identify moving loads. The moving forces were identified when considering bending moment responses from all spans of the beam. In order to avoid the lower identification accuracy around the inner supports of continuous bridge and to improve the computation efficiency, the moving force identification from the target (one selected) span of the continuous bridge was studied. The rebuilt responses were reconstructed from the identified loads as a forward problem. To study the accuracy of the method the relative percentage errors were calculated with respect to the measured and the rebuilt bending moment responses. The rebuilt bending moment responses obtained from the identified forces are in good agreement with the measured bending moment responses. This indirectly shows that the method is capable of identifying moving loads on continuous supported bridges.
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