首页> 外文期刊>Zeitschrift fur Arznei- und Gewurzpflanzen >Analytical Assessment of Main Cable Shape for Three-Pylon Suspension Bridge with Unequal Main-Span Lengths: Thermal Effect Consideration
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Analytical Assessment of Main Cable Shape for Three-Pylon Suspension Bridge with Unequal Main-Span Lengths: Thermal Effect Consideration

机译:三塔悬架桥梁主要电缆形状的分析评估,具有不等主跨度长度:热效应考虑

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Three-pylon suspension bridges with unequal main-span lengths are terrain-adaptive, and this feature makes them suitable for broad applications. However, the design and construction control of such bridges requires an accurate assessment of the main cable shape. In this study, an analytical approach for shape finding of the main cable is proposed within the framework of multisegment catenary theory. For the determination of the sag : span ratio of the secondary main span and the height of its side pylon, the basic principles were formulated. These imply that the elevation of the lowest hanging point of the main cable in the secondary main span should be equal to the main cable elevation at the midspan point in the main span. An analytical algorithm for estimating the thermal effect on the shape of the main cable was presented. Given the intermediary role of pylon top displacement and rotation angle of the splay saddle, a set of simultaneous equations was established and solved for all spans under three conditions: closure of elevation difference, moment equilibrium of splay saddle, and conservation of the unstressed length of the main cable. The proposed method was applied to a three-pylon suspension bridge with unequal spans of 248+1,060+1,360+380 m. The results obtained proved the feasibility and efficacy of the proposed approach. The application of these principles made it possible to reduce the height of the side pylon on the side of the secondary main span. This not only reduced the material consumption of hangers in the secondary main span but also improved the overall appearance of the bridge. Further analysis of the thermal effects revealed a linear correlation between the structural deformation and temperature variation. Span length variation caused by the bending deformation of pylons was shown to have a significant impact on the temperature sensitivity coefficient of the main cable elevation. This impact can be counteracted by the thermal contraction/expansion in the left and right side spans, whereas the superposition of both effects occurs in the main and secondary main spans. (c) 2019 American Society of Civil Engineers.
机译:具有不等的主跨度长度的三塔悬架桥是地形适应性,这一功能使它们适用于广泛的应用。然而,这种桥梁的设计和施工控制需要准确地评估主要电缆形状。在该研究中,提出了一种用于形状查找主电缆的分析方法在多音节绕线理论的框架内。为了确定SAG:次级主跨度的跨度比和其侧塔的高度,配制了基本原理。它们意味着次级主跨度主电缆的最低悬挂点的高度应等于主跨度中跨度的主电缆高程。提出了一种估算主电缆形状的热效应的分析算法。鉴于塔顶部位移和旋转角度的中间作用SPLAY鞍座的旋转角度,为三个条件下的所有跨度建立并解决了一组同时方程:封闭升高差异,秀戏帽的力矩平衡,以及保护长度的保护主电缆。将所提出的方法应用于三塔悬浮桥,其具有248 + 1,060 + 1,360 + 380米的不等跨越。得到的结果证明了所提出的方法的可行性和功效。这些原理的应用使得可以减小次级主跨度侧的侧塔的高度。这不仅减少了次级主跨度的衣架的材料消耗,而且还改善了桥梁的整体外观。进一步分析热效应显示结构变形和温度变化之间的线性相关性。跨度由塔旋弯曲变形引起的跨度长度变化显示对主电缆升高的温度敏感系数产生显着影响。这种影响可以通过左侧和右侧跨度的热收缩/膨胀来抵消,而两种效应的叠加在主和次级主跨度中发生。 (c)2019年美国土木工程师协会。

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