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Design Considerations for Top-Down Wall Construction in Carbonate Rock for Ohio River Bridges-East End Crossing Tunnels

机译:俄亥俄河桥梁-东端穿越隧道碳酸盐岩自上而下的墙体施工设计注意事项

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Top-down wall construction was selected to excavate the tunnel portal headwall areas of the ORB East End Crossing tunnel. Benefits included an expedited construction schedule realized by staging excavation and rock support with development of temporary construction access roads. Rock mass properties, proximity to right-of-way lines, and blasting impacts were considered to design suitable lift heights, intermediate bench locations, and permanent ground support systems to provide supported permanent excavations. Carbonate rock formations contained adverse subsurface geotechnical features including solution cavities, clay seams, weathered joints, pinnacled rock, and boulders, which were addressed by flexibility in design. The resulting over-break conditions and long-term water infiltration issues required economic design solutions. This paper discusses the unique considerations required during design of top-down tunnel portal headwalls excavated in carbonate rock formations including temporary excavation and permanent ground support systems which provided flexibility for unforeseen over-break, minimized construction delays, and provided long-term stability.
机译:选择了自上而下的墙体结构来开挖ORB东端穿越隧道的隧道入口端墙区域。好处包括加快了施工进度,该施工通过临时开挖道路的施工进行了开挖和岩石支撑。为了设计合适的举升高度,中间工作台位置和永久性地面支撑系统,以考虑岩体特性,靠近行进线和爆破冲击的影响,以设计出可支撑的永久性基坑。碳酸盐岩地层具有不利的地下岩土特征,包括溶蚀腔,粘土接缝,风化缝,针形岩石和巨石,这些都可以通过设计的灵活性来解决。由此产生的过度破坏条件和长期的水渗透问题需要经济的设计解决方案。本文讨论了在碳酸盐岩地层中开挖的自上而下的隧道门口端墙设计中需要考虑的独特因素,包括临时开挖和永久性地面支撑系统,这些系统可为无法预料的超采提供灵活性,最大程度地减少施工延迟,并提供长期稳定性。

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