周毅, 孙利民, 谢谟文. 温度对斜拉桥跨中竖向位移的作用机理研究[J]. 工程力学, 2018, 35(8): 46-54. DOI: 10.6052/j.issn.1000-4750.2017.04.0272
引用本文: 周毅, 孙利民, 谢谟文. 温度对斜拉桥跨中竖向位移的作用机理研究[J]. 工程力学, 2018, 35(8): 46-54. DOI: 10.6052/j.issn.1000-4750.2017.04.0272
ZHOU Yi, SUN Li-min, XIE Mo-wen. TEMPERATURE EFFECTS ON THE MID-SPAN VERTICAL DISPLACEMENT OF A CABLE-STAYED BRIDGE[J]. Engineering Mechanics, 2018, 35(8): 46-54. DOI: 10.6052/j.issn.1000-4750.2017.04.0272
Citation: ZHOU Yi, SUN Li-min, XIE Mo-wen. TEMPERATURE EFFECTS ON THE MID-SPAN VERTICAL DISPLACEMENT OF A CABLE-STAYED BRIDGE[J]. Engineering Mechanics, 2018, 35(8): 46-54. DOI: 10.6052/j.issn.1000-4750.2017.04.0272

温度对斜拉桥跨中竖向位移的作用机理研究

TEMPERATURE EFFECTS ON THE MID-SPAN VERTICAL DISPLACEMENT OF A CABLE-STAYED BRIDGE

  • 摘要: 跨中竖向位移是桥梁结构健康监测中的重要指标之一,它会随环境温度的改变发生可观的变化。利用上海长江大桥的现场实测数据,该文通过平面几何分析和有限元分析研究了温度对双塔斜拉桥跨中竖向位移的影响机理,揭示了斜拉桥在温度作用下的行为规律。研究表明:温度引起的斜拉桥跨中竖向位移不随环境温度或某种结构温度单调变化,可通过拉索温度、主梁平均温度、主梁顶底板温差和桥塔平均温度的热胀冷缩效应线性叠加计算;拉索温度和主梁平均温度对上海长江大桥跨中竖向位移的影响远大于主梁顶底板温差和桥塔平均温度,且拉索温度的效应方向与其余三种温度相反;该文提出的平面几何分析模型可初步估计斜拉桥跨中竖向位移随温度的变化。

     

    Abstract: The mid-span vertical displacement is an important index in structural health monitoring, and it changes considerably with the temperature variation. Based on field measurements of the Shanghai Yangtze River Bridge (SYRB), this study investigated the mechanisms of temperature effects on the mid-span vertical displacement of two-tower cable-stayed bridges through the plane geometric analysis and the finite element analysis, with the purpose of understanding the behavior of such bridges. It is found that the thermally induced mid-span vertical displacement (DT) does not vary monotonously with the temperature of atmosphere or a particular structural component. The DT could be well approximated by a multiple linear superposition of thermal expansion effects of the cable temperature (CT), girder average temperature (GAT), differential temperature between top and bottom plates of the girder (GDT), and tower average temperature (TT). For SYRB, the effects of CT and GAT on the variation of DT are almost one order greater than those of the GDT and TT, and the direction that DT takes in response to CT is opposite to that of the other three temperatures. The simplified plane geometric model proposed in this paper is able to estimate the DT of cable-stayed bridges preliminarily.

     

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