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Temperature analysis of a long-span suspension bridge based on field monitoring and numerical simulation

机译:基于现场监测和数值模拟的大跨度悬索桥温度分析

摘要

Structural temperature is an important form of loading for bridges, particularly for long-span steel structures. In this study, the temperature distribution of the Humber Bridge in the United Kingdom is investigated using numerical simulation and field measurements. A two-dimensional fine finite-element model of a typical section of the box girder of this long-span suspension bridge is constructed. The time-dependent thermal boundary conditions are determined using field meteorological measurements with external surface heat-convection coefficients varying according to differing local wind speeds they experience. Preanalysis is adopted to determine the initial thermal condition of the model, then transient heat-transfer analysis is performed and the time-dependent temperature distribution of the bridge is obtained, leading to numerical temperature data at different locations in different times that are in good agreement with the measured counterparts. The vertical and transversal temperature differences (TTDs) of the box girder are also investigated. Both measured and numerical results show that the transversal temperature variation across the streamlined girder is significant. The effects of the box-girder shape, pavement of the upper webs, and bridge orientation on the TTD are finally investigated.
机译:结构温度是桥梁,尤其是大跨度钢结构的重要荷载形式。在这项研究中,使用数值模拟和现场测量研究了英国亨伯桥的温度分布。建立了该大跨度悬索桥箱形梁典型截面的二维精细有限元模型。随时间变化的热边界条件是通过现场气象测量确定的,其外表面热对流系数根据它们所经历的不同局部风速而变化。采用预分析法确定模型的初始热工状态,然后进行瞬态传热分析,得到桥梁随时间的温度分布,得出不同时间,不同时间的温度数值数据吻合良好。与测量的同行。还研究了箱形梁的垂直和横向温差(TTD)。测量结果和数值结果均表明,流线形梁的横向温度变化很明显。最后研究了箱形梁的形状,上部腹板的铺装以及桥的方向对TTD的影响。

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