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Crossing of exceptionally poor weakness zones in three subsea tunnels, Norway

机译:在挪威的三个海底隧道中穿越异常贫困的薄弱区

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In Norway 18 subsea road tunnels have successfully been constructed during the last 22 years. Four tunnels are presently under construction, among them the Oslofjord and Froya tunnels. Like the Bjoroy tunnel, that were taken into use in 1996, these tunnels have encountered weakness zones of exceptionally poor rock mass quality. For the Bjoroy tunnel the location and complexity of the zone were unforeseen, in the Oslofjord tunnel only the complexity. In the Froya tunnel the pre-investigations had revealed exceptionally poor rock before construction started. The paper describes the decision process and actions that were taken from the time when the zones were detected in the tunnel up until permanent support of the zones. The level and types of pre-investigations are discussed as well as the design of minimum rock cover at critical parts of the tunnel. The methods and costs for crossing of the zones are presented. Finally, it is discussed how systematic and thorough pre-investigations and risk analyses can be used to handle or avoid similar situations as in the Bjoroy and Oslofjord tunels.
机译:在过去的22年中,挪威成功修建了18条海底公路隧道。目前正在建设四条隧道,其中包括Oslofjord和Froya隧道。与1996年开始使用的Bjoroy隧道一样,这些隧道也遇到了岩体质量异常差的薄弱区域。对于Bjoroy隧道,该区域的位置和复杂性是无法预料的,​​而在Oslofjord隧道中,只有复杂性。在Froya隧道中,预调查显示在施工开始之前,岩石异常贫瘠。本文介绍了从在隧道中检测到区域到区域的永久支持之间的决策过程和采取的措施。讨论了预调查的级别和类型,以及隧道关键部分的最小岩石覆盖率设计。介绍了穿越区域的方法和成本。最后,讨论了如何使用系统,彻底的预调查和风险分析来处理或避免类似Bjoroy和Oslofjord的情况。

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