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Span ratios in bridges constructed using a balanced cantilever method

机译:使用平衡悬臂法建造桥梁的跨度比

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This paper introduces a relation to determine the span ratio between exterior and interior spans, which is required in the preliminary design stage of bridges constructed by balanced cantilever method. On the basis of the numerical results obtained by rigorous time-dependent analyses and by the simple equations introduced in the companion paper, the moment distribution along the spans and its variation with the construction sequence are reviewed, and a recommendation for a rational design is suggested. First, a relation for the initial tendon force is derived on the basis of an assumption that no vertical drift occurs at the far end of a cantilever beam due to the balanced condition between the self-weight and the cantilever tendons. In advance, the determination of an effective span ratio is followed with an assumption that the magnitude of maximum negative moment must be the same as that of the maximum positive moment along all of the spans. Finally, many rigorous time-dependent analyses are conducted to establish the validity of the introduced relations, and this paper shows that an effective span length ratio of the exterior span to the interior span ranges between 0.75 and 0.8.
机译:本文介绍了确定跨度与跨度之比的关系,这是平衡悬臂法建造桥梁的初步设计阶段所必需的。根据严格的时变分析和随附的简单方程得出的数值结果,回顾了跨距上的弯矩分布及其随施工顺序的变化,并提出了合理设计的建议。首先,基于如下假设得出与初始腱力的关系:由于自重和悬臂肌腱之间的平衡状态,在悬臂梁的远端没有发生垂直漂移。预先,在确定有效跨距比之后,假定最大负力矩的大小必须与沿所有跨距的最大正力矩的大小相同。最后,进行了许多严格的时变分析以建立所引入关系的有效性,并且本文表明,外部跨度与内部跨度的有效跨度长度比在0.75至0.8之间。

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