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Qiang Jing

https://orcid.org/0000-0002-1599-2423

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Journal of Zhejiang University SCIENCE A 2020 Vol.21 No.4 P.249-254

http://doi.org/10.1631/jzus.A1900645


Continuous steel box girders and reinforced concrete structures in the Main Bridge Project of Hong Kong-Zhuhai-Macao Bridge


Author(s):  Qiang Jing

Affiliation(s):  Hong Kong-Zhuhai-Macao Bridge Authority, Zhuhai 519060, China

Corresponding email(s):   jq@hzmbo.com

Key Words:  Hong Kong-Zhuhai-Macao Bridge, Continuous steel box girder, Reinforced concrete structure


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Qiang Jing. Continuous steel box girders and reinforced concrete structures in the Main Bridge Project of Hong Kong-Zhuhai-Macao Bridge[J]. Journal of Zhejiang University Science A, 2020, 21(4): 249-254.

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T1 - Continuous steel box girders and reinforced concrete structures in the Main Bridge Project of Hong Kong-Zhuhai-Macao Bridge
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Abstract: 
As the longest sea-crossing highway bridge in the world, the 55-km hong Kong-Zhuhai-Macao Bridge (HZMB) directly connects Hong Kong, Zhuhai, and Macao, which are three cities in China that are geographically close but separated by the Pearl River Estuary (PRE). The construction of the project lasted from January 2011 to February 2018 and was finally opened to traffic in October 2018. The total investment of the project was 126.9 billion CNY (about 18.03 billion USD). The HZMB consists of three main sections: the Main Bridge (29.6 km) in the middle, the Hong Kong Link Road (12 km) in the east, and the Zhuhai Link Road (13.4 km) in the west.

港珠澳大桥主桥工程中的连续钢箱梁和钢筋混凝土结构

概要:作为目前世界上最长的跨海公路桥梁工程,港珠澳大桥在设计和施工中遇到了诸多难题,但它们都被一一克服; 在此积累的经验非常值得国内外同行借鉴. 为此,针对港珠澳大桥主体桥梁工程中连续钢箱梁的施工全过程的温度效应控制、结构性能预测和施工状态控制及钢筋混凝土结构中钢筋锈蚀对结构承载力的影响,本专辑邀请了直接参与到港珠澳大桥建设的科研人员和工程管理人员来分享他们的研究成果和观点,希望能帮助读者了解相关研究工作并促进研究人员开展讨论,以推进该领域的基础研究和技术创新.
关键词:港珠澳大桥; 连续钢箱梁; 施工控制; 钢筋混凝土结构; 钢筋锈蚀

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1]Feng Q, Wang GN, Zhang YP, et al., 2020. Numerical simulation of partial-interaction load-deflection behavior of corroded reinforced concrete beams based on a segmental approach and evaluation of reinforcement corrosion level. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 21(4):280-293.

[2]Gao WB, Zhang MG, Piao L, 2016. Manufacturing techniques for integral steel pylon of river-to-sea ship channel bridge of Hong Kong-Zhuhai-Macao Bridge. Bridge Construction, 46(2):7-12 (in Chinese).

[3]Hussain N, Wong C, Carter M, et al., 2011. Hong Kong Zhuhai Macao link. Procedia Engineering, 14:1485-1492.

[4]Jing Q, 2015. Analysis method for deformation of long cantilever continuous steel box girder of Hong Kong-Zhuhai-Macao Bridge. Bridge Construction, 45(2):1-5 (in Chinese).

[5]Jing Q, Su QK, Chen DX, 2015. Construction scheme for embedded pile caps of sea-crossing bridge projects of Hong Kong-Zhuhai-Macao Bridge. World Bridges, 43(2):29-33 (in Chinese).

[6]Meng FC, Liu MH, Wu WS, et al., 2014a. The design philosophy and bridge’s technical innovation of Hong Kong-Zhuhai-Macao Bridge. Engineering Sciences, 12(3):48-57.

[7]Meng FC, Su QK, Bu YZ, et al., 2014b. Optimized design of anti-fatigue for orthotropic steel bridge deck. Highway, (10):1-6 (in Chinese).

[8]Su QK, 2005. An analysis of special techniques for sea-crossing bridge. Journal of Highway and Transportation Research and Development, 22(12):101-104 (in Chinese).

[9]Su QK, Xie HB, 2016. Summary of steel bridge construction of Hong Kong-Zhuhai-Macao Bridge. China Journal of Highway and Transport, 29(12):1-9 (in Chinese).

[10]Wang JF, Zhang JT, Yang ZX, et al., 2020a. Control measures for thermal effects during placement of span-scale girder segments on continuous steel box girder bridges. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 21(4):255-267.

[11]Wang JF, Wu TM, Zhang JT, et al., 2020b. Refined analysis and construction parameter calculation for full-span erection of the continuous steel box girder bridge with long cantilevers. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 21(4):268-279.

[12]Zhang JW, Zhu YL, 2012. Project management planning for construction of Hong Kong-Zhuhai-Macao Bridge (HZMB) Main Bridge Project. Highway, (3):143-147 (in Chinese).

[13]Zhang JW, Zhu YL, 2018. Complexity management: management thinking innovation and practice in Hong Kong-Zhuhai-Macao Bridge main-body engineering. Journal of Systems & Management, 27(1):186-191 (in Chinese).

[14]Zhu YL, Lin M, Meng FC, et al., 2019. Engineering achievements: the Hong Kong-Zhuhai-Macao Bridge. Engineering, 5(1):10-14.

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