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沈家门港海底沉管隧道浮运、沉放施工控制技术
引用本文:邓建林. 沈家门港海底沉管隧道浮运、沉放施工控制技术[J]. 隧道建设, 2015, 35(9): 914-919. DOI: 10.3973/j.issn.1672-741X.2015.09.009
作者姓名:邓建林
作者单位:(中铁隧道集团杭州公司, 浙江 杭州 310030)
摘    要:沈家门港隧道工程为我国大陆首次采用沉管法修建的海底行人交通隧道。为解决海浪、潮汐等对沉管隧道施工的影响问题,通过力学计算分析和管段浮运、沉放方法的选择,施工窗口时间的确定,针对管段浮运、沉放、水力压接、回填等关键问题进行重点分析和阐述。得出:通过合理的施工窗口时间确定、施工方法的选择、具体施工参数的确定、适当的安全系数放大等施工控制技术,能实现海底隧道管段的浮运和沉放。

关 键 词:海底沉管隧道  浮运  沉放  施工控制技术
收稿时间:2015-06-08

Control Technology for Towing and Sinking of Immersed Tubes: Case Study on Shenjiamen Port Sub-sea Tunnel
DENG Jianlin. Control Technology for Towing and Sinking of Immersed Tubes: Case Study on Shenjiamen Port Sub-sea Tunnel[J]. Tunnel Construction, 2015, 35(9): 914-919. DOI: 10.3973/j.issn.1672-741X.2015.09.009
Authors:DENG Jianlin
Affiliation:(Hangzhou Branch of China Railway Tunnel Group Co., Ltd., Hangzhou 310030, Zhejiang, China)
Abstract:Shenjiamen port sub sea tunnel is the first sub sea passenger tunnel in mainland China built by immersed tube method. In the paper, the influence of the waves and tides on the construction of the sub sea tunnel is presented, proper tube towing method and proper tube sinking method are selected on basis of mechanical calculations and analysis, proper construction window time is determined, and the key points in the towing, sinking, connection and backfilling of the tubes are analyzed. In the end, the tunnel has been completed successfully.
Keywords:immersed tube tunnel  towing  sinking  construction control technology
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