全天监测时温度对桥梁结构的影响

O. Michal, R. Urban
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引用次数: 0

摘要

目前,桥梁结构大量采用预应力结构。它们的水平和垂直位移可以很好地预测,但为了验证理论结果,还需要测量这些结构在外部条件下的实际位移。由于设计的复杂性和外部影响(特别是大气温度、日照、风速等)的不均匀性,尚不能可靠地确定由环境的直接状态引起的结构变化,并将其与结构的不可逆(永久)变形区分开来。本文对拉贝河上查伯拉将军大桥在全天监测期间的挠度线进行了分析。有密集的稳定点覆盖,可以精确地近似桥梁结构的位移。本文重点研究了温度对桥梁结构的影响。温度变化引起的结构变形不是立即发生的,而是随着温度变化与结构变形之间的时移而发生的。虽然桥面两侧的点都是稳定的,但对于结果的分析,只使用了主跨左侧的点,在那里检测到最大的垂直位移。为了检验结构变形时移与结构温度的相关性,采用了Pearson相关系数。
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Temperature effects on the bridge structure during the all-day monitoring
In current time the large amount of pre-stressed bridge structures is used. Their horizontal and vertical displacements are well predicted, but for verification of theoretical results is necessary to measure real displacements of these structures depending on external conditions. Given by the complexity of the design and by the inhomogeneity of external influences (especially temperature of the atmosphere, insolation, wind speed, etc.) cannot yet be reliably determined the changes of the construction caused by the immediate state of the environment and to distinguish them from irreversible (permanent) deformation of the structure. In this paper the deflection line of the bridge of general Chabera over river Labe during the all-day monitoring will be analyzed. There is dense coverage of stabilized points enabling accurate approximation of the displacement of the bridge structure. The paper is focused especially on temperature effects on the bridge structure. The temperature changes cause the deformation of the construction not immediately, but with the time shift between change of temperature and structure deformation. Although the points are stabilized on both sides of the bridge deck, for the analysis of results were used only the points on the left side of the main span, where the biggest vertical displacements was detected. For testing of dependence of the time shift between the structure deformations and the structure temperature the Pearson coefficient of correlation was used.
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