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Design Analyses for a Large-Span Tunnel in Weak Rock Subject to Strong Seismic Shaking

机译:弱岩体大跨度隧道的设计分析,受强震震动

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The proposed Caldecott fourth bore will consist of a two lane highway tunnel along California State Route 24 near the City of Oakland. The proposed design and construction sequence for the 15-mdiameter tunnel are based on the New Austrian Tunneling Method (NATM). The initial support system incorporates combinations of shotcrete, rock dowels, lattice girders, spiles, and grouted steel pipe canopies. The final lining is cast-in-place reinforced concrete. A waterproofing membrane and drainage system are placed between the initial and final linings. State Route 24 is a lifeline route, required to be open to emergency vehicles within 72 hours after a major earthquake, defined as having a return period of 1,500 years and a peak ground acceleration of 1.2 g. Although the seismic design criteria are stringent, the design of the tunnel lining system is ultimately controlled by static ground loads in the weak rock along the alignment.
机译:拟议的Caldecott第四孔将由沿着奥克兰市附近的加利福尼亚州24号线的两条车道公路隧道组成。建议的15-MDIAMeter隧道的设计和施工顺序基于新的奥地利隧道方法(NATM)。初始支持系统包括喷射,岩石销钉,格子梁,垫和灌浆钢管檐的组合。最终衬里是制热的钢筋混凝土。防水膜和排水系统放置在初始和最终衬里之间。国家航线24是一个生命线路线,需要在大地震后72小时内开放到应急车辆,定义为返回期为1500年的返回时间和1.2克的峰接地加速度。虽然地震设计标准是严格的,但是隧道衬里系统的设计最终由弱岩石中的静态载荷沿着对准来控制。

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