多塔斜拉桥主跨交叉索设置方式研究
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作者:
作者单位:

1.西安科技大学 土木工程学院,西安 710054;2.中建三局集团有限公司,西安 710000

作者简介:

柴生波(1983—),男,副教授,博士,主要从事大跨度桥梁结构研究,(E-mail) csbtc@163.com。

通讯作者:

王秀兰,女, (E-mail) wxl2011wxl@163.com。

中图分类号:

U448.27

基金项目:

国家自然科学基金资助项目(52178166);青海省自然科学基金资助项目(2019-ZJ-7056)。


Research on the arrangement of crossed cables for the main span of multi-tower cable-stayed bridges
Author:
Affiliation:

1.School of Architecture and Civil Engineering,Xi’an University of Science and Technology,Xi’an 710054, P. R. China;2.China Construction Third Bureau Group Co., Ltd.,Xi’an 710000, P. R. China

Fund Project:

Supported by National Natural Science Foundation of China (52178166), and Natural Science Foundation of Qinghai Province (2019-ZJ-7056).

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    摘要:

    为了提高多塔斜拉桥的结构刚度,提出了一种新型的主跨交叉索布置方式。通过分析交叉索对中塔的约束刚度公式,研究了约束刚度最大时,交叉索的设置位置,提出了主跨交叉索的非对称布置方式。建立三塔、四塔斜拉桥有限元模型,考虑拉索的垂度效应及结构大位移效应,分析了交叉索非对称布置对塔、梁变形及桥塔受力的影响。结果表明,当多塔斜拉桥的高跨比位于0.2~0.3之间,主跨交叉索距中塔的距离为0.7~0.76倍的跨长时,对中塔的约束刚度最大;在均布荷载作用下,与对称布置相比,三塔、四塔斜拉桥采用交叉索非对称布置时,中塔的塔顶水平位移分别减小10.8%、11.9%,加载跨的最大下挠减小3.3%、0.2%,主梁的一阶竖弯频率增大3.5%、6.4%,中塔的塔底弯矩减小14.1%、8.1%。非对称布置可明显提高交叉索对中塔的约束,增大结构刚度、改善中塔受力。

    Abstract:

    To improve the structural rigidity of multi-tower cable-stayed bridges, a novel crossed cable arrangement is proposed. By deriving and analyzing the restraint stiffness formula of the middle tower’s crossed cables, the optimal position for maximum restraining stiffness was investigated, leading to the proposal of an asymmetrical cable arrangement. Finite element models of three-tower and four-tower cable-stayed bridges were established, accounting for cable sag effects and large structural displacements. The influence of the asymmetrical cable arrangement on tower-beam deformation and tower forces was analyzed. Results show that when the height-to-span ratio of the multi-tower cable-stayed bridge ranges from 0.2 to 0.3, the optimal position for the crossed cables is approximately 0.7 to 0.76 times the span length form the middle tower. Compared to the traditional symmetrical arrangement, the asymmetrical configuration reduces the horizontal displacement at the top of the middle tower by 10.8% and 11.9%, and decreases the mid-span deflection under uniform load by 3.3% and 0.2% for the three-tower and four-tower cable-stayed bridges, respectively. Additionally, the first-order vertical bending frequency of the main girder increases by 3.5% and 6.4%, while the bottom bending moment of the middle tower decreases by 14.1% and 8.1%. These findings demonstrate that the asymmetrical arrangement significantly improves the restraining effect of crossed cables on the middle tower, increases overall structural rigidity, and improves the load-bearing performance of the middle tower.

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柴生波,张瑞琳,王秀兰,郭昆.多塔斜拉桥主跨交叉索设置方式研究[J].重庆大学学报,2025,48(3):121-132.

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  • 收稿日期:2022-01-21
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  • 在线发布日期: 2025-04-15
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