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Linear Control Method for Arch Ring of Oblique-Stayed Buckle Cantilever Pouring Reinforced Concrete Arch Bridge

机译:钢环斜扣悬臂浇注钢筋混凝土拱桥的线圈控制方法

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摘要

Yelang Lake Bridge is the largest cantilevered single-chamber reinforced concrete arch bridge in China, with a net span of 210 m. In this article, an equation for positioning the height of the formwork before pouring of the arch ring segment was derived, which was suitable for the construction control of the long-span reinforced concrete arch bridge such as the Yelang Lake Bridge. The arch ring segment elevation calculation equation was derived under the two typical working conditions that the concrete pouring of the arch ring segment is completed and the buckle cable and anchor cable tensioning are completed. In addition, two typical working conditions of arch ring segment concrete pouring and cable tensioning were evaluated. Then, a new type of cradle and loading test of the cradle, which meet the requirements of the long segment pouring of the arch ring, were introduced. Finally, the measurement deviation during the construction of the arch segment was analyzed. The linear control results of the arch ring showed that the arch ring segment elevation calculation formula could effectively ensure the accuracy of the arch ring segment construction process under the two typical conditions of completion of concrete pouring of the arch ring segment and completion of the buckle and anchor cable tensioning. The maximum deviation is only 3.1 mm. The line shape after the completion of the arch ring construction was in good agreement with the target line shape, and the deviation between the measured value and the target value was only 2.5 cm, which met the engineering requirements.
机译:Yelang Lake Bridge是中国最大的悬臂式单室钢筋混凝土拱桥,净跨度为210米。在本文中,推导出用于定位拱环段浇注前的模板高度的等式,这适用于诸如yelang湖桥等长跨度钢筋混凝土拱桥的施工控制。在两个典型的工作条件下得出拱环段仰角升高计算等式,即完成拱环段的混凝土浇注并完成扣电缆和锚缆柱张紧。此外,评估了两个拱环段混凝土浇注和电缆张紧的典型工作条件。然后,介绍了一种新型的摇篮和摇篮的装载试验,符合拱环的长段浇注的要求。最后,分析了拱形段结构期间的测量偏差。拱环的线性控制结果表明,拱环段升高计算公式可以有效地确保拱环段施工过程的准确性在两个典型条件下完成拱门环段的混凝土浇注和完成扣的完成条件下的两个典型条件下锚缆张力。最大偏差仅为3.1毫米。拱环结构完成后的线形状与目标线形状吻合良好,测量值与目标值之间的偏差仅为2.5厘米,符合工程要求。

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