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涉水高墩现浇箱梁支撑体系的承载能力分析和方案优化
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作者单位:

(1.昆明理工大学 建筑工程学院 ,云南 昆明 650500 ;2.云南赢铸建筑设备租赁有限公司 ,云南 昆明 650200 ;3.中盛弘宇建设科技有限公 司 云南分公司 ,云南 昆明 650051 )

作者简介:

郭涛,男,博士,副教授.E-mail:guotaoj@126.com

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中图分类号:

U445.4

基金项目:

云南省交通运输厅科技项目(编号:2021-91)


Supporting Capacity Anal ysis and Construction Scheme Optimization of Support System for Cast‑in‑Situ Box Girders in High‑Pier Wading Bridges
Author:
Affiliation:

(1.Faculty of Civil Engineering and Mechanics , Kunming University of Science and Technology , Kunming ,Yunnan 650500 , China ; 2.Yunnan Yingzhu Construction Equipment Leasing Co ., Ltd., Kunming ,Yunnan 650200 , China ; 3.Zhongsheng Hongyu Construction Technology Co ., Ltd., Yunan Branch Co ., Kunming ,Yunnan 650051 , China )

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    摘要:

    混凝土现浇梁支架虽然属于临时结 构,但仍具有 承载功能,而且随着桥梁工程的发展,高大支架的受力也越来越复杂,传统的结构力学手算方法已无法全面反映和权衡特殊体型、特殊部位和特殊工况的受力情况。为保证工程的顺利开展,需采用数值方法进行整体承载力计算和方案设计。该文采用 Midas/Civil 有限元软件,从强度、刚度、稳定性和经济性 (用钢量 )等方面综合评价满堂支撑、梁式支撑体系的安全性能和通用性。结果表明:① 满堂支撑虽然施工简单,用钢量小,下部支撑杆系较多,受力均匀,变形小,最大挠度仅为 2.82 mm,但是强度和稳定性不及梁式支撑,对场地要求还高。当应用于高大桥梁时,需整体进行屈曲分析,谨防结构失稳破坏;② 梁式支撑虽然不会发生强度和失稳性破坏,对场地和地基基本没有要求。但是其用钢量高、施工难度也大,并且因跨中缺乏竖向支撑,变形有所增加。因此,在应用于 “预拱度 ”要求较高的复杂桥梁工程中时,需进行找形分析;③ 在力学指标均达标的前提下,可以适当调整贝雷梁横向净距或下弦杆加强等措施,以获取经济性。以该文案例工程为例,贝雷梁净距由 80 cm调整到 100 cm,可以节省约 10%的用钢量。

    Abstract:

    Although a concrete bridge su pport system is a temporary structure,it still has a supporting capacity.With the development of bridge engineering,concrete bridges with high piers and long spans are gradually applied in deep reservoir areas,and the forces on scaffolding are more and more complex.Traditional manual calculations in structural mechanics can no longer completely reflect the stress-strain states of scaffolding with irregular configurations,special parts,and uncommon conditions.Thus,it is necessary to use a numerical method to calculate the supporting capacity of scaffolding and design construction schemes.This paper took a concrete wading bridge with high piers as an example.An evaluation method based on the finite element method with the Midas civil software is proposed for analyzing the safety of a support system from the aspects of strength,rigidity,stability,and cost-effectiveness.The results show that although disc-type full scaffold structures are simple in construction,with low steel consumption,various stand bars,uniform stress distribution,and small deformation (a maximum deflection of only 2.82 mm ),their strength and stability are not as good as beam support systems.In addition,they have higher requirements for sites.Therefore,when disc-type full scaffold structures are applied to high-piers and large-span bridges,buckling analysis should be carried out on the whole model to prevent instability and collapse.Conversely,beam support systems usually do not suffer from strength and stability failures and have few requirements for sites.However,they are difficult to construct and require high steel consumption.Furthermore,deformation is increased due to the lack of vertical support in the midspan.Therefore,form-finding analysis must be carried out strictly when they are applied to complex bridges involving the “pre-camber ” problem.In addition,on the premise that mechanical indexes are met,measures can be taken to achieve higher cost-effectiveness,such as adjusting the net distance of Bailey beams and strengthening lower chords.In this case,the net distance was adjusted from 80 to 100 cm,which can save about 10% in steel consumption.

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郭涛,姚雨晨,马鸿泽,等.涉水高墩现浇箱梁支撑体系的承载能力分析和方案优化[J].中外公路,2024,44(3):145-152.
GUO Tao, YAO Yuchen, MA Hongze, et al. Supporting Capacity Anal ysis and Construction Scheme Optimization of Support System for Cast‑in‑Situ Box Girders in High‑Pier Wading Bridges[J]. Journal of China and Foreign Highway,2024,44(3):145-152.

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  • 收稿日期:2022-11-08
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  • 在线发布日期: 2024-06-27
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