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Incremental Launching Construction Control of Long Multispan Composite Bridges

机译:大跨度复合材料桥梁增量发射施工控制

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The low stiffness of steel U-shaped girders during incremental launching construction has led to the development of an innovative incremental launching construction method that addresses the special requirements of long, multispan composite bridges. A local stress control strategy is utilized to avoid local yielding of the bottom plate. Analysis of the geometric shape control characteristics of composite bridges located on vertical curves allows a control strategy for launching to be established and validated. The concept of state vector is introduced for geometric shape control and prediction. Field results reveal that most of the elevation errors fall into the range of +/- 1: 0 cm. This paper demonstrates that highly precise control of geometric shapes can be achieved via the proposed methodology. Through accurate analysis of the geometric shapes of composite bridges, errors can be detected and corrected in a timely manner. (C) 2015 American Society of Civil Engineers.
机译:U形钢U形梁在增量发射施工过程中的低刚度导致开发了一种创新的增量发射施工方法,该方法可满足长跨度复合桥的特殊要求。利用局部应力控制策略来避免底板的局部屈服。分析位于垂直曲线上的复合材料桥梁的几何形状控制特性,可以建立和验证用于发射的控制策略。引入状态向量的概念用于几何形状的控制和预测。现场结果表明,大多数仰角误差都在+/- 1:0 cm范围内。本文证明了通过所提出的方法可以实现对几何形状的高精度控制。通过对复合材料桥梁的几何形状进行精确分析,可以及时发现并纠正错误。 (C)2015年美国土木工程师学会。

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