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Abstract

As the planning and deployment of cross-sea and river-crossing passages continue,prominent issues such as high labor demand and poor working conditions have become evident during the construction of large-span and ultra-high cable towers.To address these issues,this paper explored efficient construction methods for ultra-high cable towers based on the concepts of intelligent,industrialized,standardized,and assembled construction technology for cable towers.The research method combined qualitative analysis of reasonable construction organization,and integrated intelligent tower construction equipment for ultra-high cable towers,as well as industrialized forming and assembled construction technologies for tower column reinforcement was proposed.Through the application in the Lingdingyang Bridge along the Shenzhen‒Zhongshan Bridge project,the research results indicate that this key technology significantly enhances the level of intelligent construction technology for cable towers,effectively ensures operational safety,and further improves the quality of bridge tower construction.The paper verifies the feasibility and effectiveness of the proposed technology,providing important theoretical and practical guidance for the construction of ultra-high concrete cable towers.This has significant reference value for similar future projects and contributes to the innovative development of cable tower construction technology.

Publication Date

4-10-2025

DOI

10.14048/j.issn.1671-2579.2025.02.019

First Page

171

Last Page

177

Submission Date

April 2025

Reference

[1]万瑞,魏春春.液压爬模施工技术在超高层建筑工程中的应用 [J].中国港湾建设,2019,39(7):70-73.WAN Rui,WEI Chunchun.Application of hydraulic climbing construction technology in super-high-rise building engineering [J].China Harbour Engineering,2019,39(7):70-73.
[2]张三鹏,张文光,钟国兴.超高层核心筒液压爬模及布料机一体化施工技术 [J].施工技术,2020,49(2):77-79.ZHANG Sanpeng,ZHANG Wenguang,ZHONG Guoxing.Integration construction technology of hydraulic climbing formwork and material spreader for core tube of super high-rise building [J].Construction Technology,2020,49(2):77-79.
[3]王东辉,韩冰.平潭海峡公铁两用大桥通航孔桥桥塔施工关键技术 [J].桥梁建设,2019,49(3):1-5.WANG Donghui,HAN Bing.Key techniques for construction of pylon of channel bridge of Pingtan Straits Rail-Cum-Road Bridge [J].Bridge Construction,2019,49(3):1-5.
[4]余信言.洛河特大桥高墩液压自爬模施工技术 [J].石家庄铁道大学学报 (自然科学版 ),2018,31(增刊 2):149-152.YU Xinyan.Construction technology of hydraulic self-climbing formwork for high pier of Luohe Bridge [J].Journal of Shijiazhuang Tiedao University (Natural Science Edition ),2018,31(sup 2):149-152.
[5]孙文,王志珑,蒋国华,等.集成模块化工厂拼装液压爬模快速安拆施工技术 [J].施工技术,2019,48(20):43-45,53.SUN Wen,WANG Zhilong,JIANG Guohua,et al.Construction technology of fast installation and demolition of hydraulic climbing formwork for assembled in integrated modular industry [J].Construction Technology,2019,48(20):43-45,53.
[6]周翰斌.土耳其伊兹米特海湾大桥施工关键技术 [J].施工技术,2020,49(3):29-32.ZHOU Hanbin.Key construction technology for Izmit Bay Bridge in Turkey [J].Construction Technology,2020,49(3):29-32.
[7]宋达,易季爰.荆岳长江公路大桥南索塔施工 [J].中外公路,2010,30(5):193-196.SONG Da,YI Jiyuan.Construction of south cable tower of Jingyue Yangtze River Highway Bridge [J].Journal of China & Foreign Highway,2010,30(5):193-196.
[8]刘自明.平潭海峡公铁大桥施工关键技术 [J].桥梁建设,2019,49(5):1-8.LIU Ziming.Key construction techniques for Pingtan Straits Rail-Cum-Road Bridge [J].Bridge Construction,2019,49(5):1-8.
[9]李军堂.沪通长江大桥主航道桥桥塔施工关键技术 [J].桥梁建设,2019,49(6):1-6.LI Juntang.Key construction techniques for pylons of main navigational channel bridge of Hutong Changjiang River Bridge [J].Bridge Construction,2019,49(6):1-6.
[10]徐秋红,李向阳.全智能控制液压钢模板在深中通道箱梁预制中的应用 [J].世界桥梁,2019,47(6):36-40.XU Qiuhong,LI Xiangyang.Application of fully intelligent-controlled hydraulic steel formwork to prefabrication of box girders of Shenzhen ‒ Zhongshan corridor [J].World Bridges,2019,47(6):36-40.
[11]王鹏.斜拉桥超高索塔上横梁装配桁架式支撑体系设计施工关键技术 [J].中外公路,2020,40(3):124-128.WANG Peng.Key technology of design and construction of truss-assembled support system for upper crossbeam of super-high pylon of cable-stayed bridge [J].Journal of China & Foreign Highway,2020,40(3):124-128.
[12]谢良,赵煜成,戴黎霞.索塔拱形变截面横梁施工关键技术研究 [J].中外公路,2016,36(4):216-220.XIE Liang,ZHAO Yucheng,DAI Lixia.Research on key technologies for construction of variable-cross-section transverse beams in cable tower arch shapes [J].Journal of China & Foreign Highway,2016,36(4):216-220.
[13]封江东,陈毅明,陈楚龙.沌口长江公路大桥主桥索塔下横梁施工方案比选 [J].中外公路,2016,36(3):201-206.FENG Jiangdong,CHEN Yiming,CHEN Chulong.Comparison and selection of construction schemes for the lower transverse beam of the main cable tower of the Dunkou Changjiang River H ighway Bridge [J].Journal of China & Foreign Highway,2016,36(3):201-206.
[14]彭晓彬,詹建辉,常英,等.武穴长江公路大桥总体设计 [J].中外公路,2019,39(3):72-77.PENG Xiaobin,ZHAN Jianhui,CHANG Ying,et al.Overall design of Wuxue Yangtze River Highway Bridge [J].Journal of China & Foreign Highway,2019,39(3):72-77.
[15]王桢,牛永喆,李海鹏.宝鸡清水河特大桥主桥总体设计[J].中外公路,2023,43(6):105-115.WANG Zhen,NIU Yongzhe,LI Haipeng.Overall design of main bridge of Qingshui River Bridge in Baoji [J].Journal of China & Foreign Highway,2023,43(6):105-115.
[16]王鹏.东莞市滨海湾大道沙涌桥总体设计 [J].中外公路,2022,42(3):127-130.WANG Peng.Overall design of Shayong Bridge on Binhai Bay Avenue in Dongguan City [J].Journal of China & Foreign Highway,2022,42(3):127-130.
[17]吴玲正.深中通道项目桥梁设计方案及主要技术难点[J].中外公路,2021,41(2):189-192.WU Lingzheng.Design scheme and main technical challanges of Shenzhen-Zhongshan Bridge project [J].Journal of China & Foreign Highway,2021,41(2):189-192.
[18]王文明,柴生波,聂宁波,等.拱形桥塔施工控制措施及温度效应分析 [J].中外公路,2023,43(6):140-148.WANG Wenming,CHAI Shengbo,NIE Ningbo,et al.Construction control measures and temperature effect analysis of arch-type bridge tower [J].Journal of China & Foreign Highway,2023,43(6):140-148.
[19]任雷.高墩多塔预应力混凝土斜拉桥主梁施工关键技术[J].中外公路,2022,42(6):99-104.REN Lei.Key construction technology on cable-stayed bridge girders with high-piers and multiple-towers [J].Journal of China & Foreign Highway,2022,42(6):99-104.
[20]于峥.王家河特大桥高墩多跨矮塔斜拉桥施工关键技术研究 [J].中外公路,2021,41(3):110-115.YU Zheng.Study on key construction technology of cable-stayed bridge with high piers and multiple spans crossing Wangjiahe River [J].Journal of China & Foreign Highway,2021,41(3):110-115.

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