本州-四国大桥悬索桥主缆干式喷风系统管理20年

T. Hanai, Yukimasa Kishi, Y. Asakura, Kiyohiro Imai, D. Frangopol
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引用次数: 0

摘要

主缆是悬索桥最重要的构件,由于更换难度大,需要可靠的防腐保护。在过去,腐蚀保护主要是通过在电缆上涂一层涂层来阻挡水分。1989年,在使用了六年之后,对Innoshima大桥的主电缆内部进行了调查。结果,在主电缆内部发现了水,并确认镀锌钢丝表面有腐蚀。这表明仅靠常规方法不足以防止腐蚀。因此,开始研究在日本气候条件下主电缆的有效防腐方法。因此,开发了一种干空气注入系统,通过向电缆注入干空气来防止腐蚀。1997年的赤石海京大桥和1999年的黑岛海京大桥在世界上首次采用了该系统。此外,从1997年到1999年,干空气喷射系统安装在6座现有的悬索桥上,包括Ohnaruto桥。在引进该系统20多年后,本州-四国大桥所有悬索桥主缆的相对湿度已经趋于稳定。本文介绍了第一座采用该系统的新建悬索桥赤石-海京大桥和第一座采用该系统的现有悬索桥奥纳鲁托桥的干式空气喷射系统的维护、改进和未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Management of Dry Air Injection System for Main Cables of Suspension Bridges in Honshu-Shikoku Bridges for 20 Years
Main cables are the most important components of suspension bridges and require reliable corrosion protection because they are difficult to replace. In the past, corrosion protection has been performed mainly by coating the cables to block moisture. In 1989, after six years of service, inside of the main cable of the Innoshima Bridge was investigated. As a result, water was found inside the main cable and corrosion was confirmed on the surface of the galvanized steel wire. This revealed that conventional methods alone were insufficient to prevent corrosion. Because of this fact, investigation of effective methods of main cable corrosion protection under Japanese climate was started. As a result, a dry air injection system was developed to prevent corrosion by injecting dry air into the cables. The system was adopted for the first time in the world for the Akashi-Kaikyo Bridge in 1997 and the Kurushima Kaikyo Bridge in 1999. In addition, the dry air injection system was installed on six existing suspension bridges, including the Ohnaruto Bridge, from 1997 to 1999. More than 20 years after the system was introduced, the relative humidity in the main cables has become stable on all suspension bridges of the Honshu-Shikoku bridges. This paper presents the maintenance, improvement, and future prospects of the dry air injection system for the Akashi-Kaikyo Bridge, the first newly constructed suspension bridge to adopt the system, and the Ohnaruto Bridge, the first existing suspension bridge to adopt the system.
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