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Mechanical characteristics of primary support of large span loess highway tunnel: A case study in Shaanxi Province, Loess Plateau, NW China primary

机译:大跨度黄土公路隧道初级支撑的力学特性 - 以陕西省陕西高原为例

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When a large span loess tunnel is excavated, the rock mass is disturbed, and it is difficult to form a load-bearing arch under shallow depth region. As a result, the structural deformation is complicated. This paper analyzed the deformation of 18 sections in Grade V rock mass and the primary support structural force of 2 sections in a case study of a highway loess tunnel in the large span loess highway tunnel group of Huangyan Traffic Capacity Expansion Engineering in Northern Shaanxi Province-Jianzicha No.2 Tunnel. The analyzed results were combined with the FLAC 3D numerical simulation to study the deformation of rock mass in Jianzicha No.2 tunnel and the stress characteristics of primary support. The results showed that (1) The time-space relationship curve of arch deformation indicated three stages of "rapid deformation stage -continuous deformation stage-slow deformation stage" in the construction by annular excavation with reserved core soil method. (2) The rock mass pressure distribution of tunnel basically presented the bilateral symmetry characteristics. The rock mass pressure distribution of arch was relatively uniform, and the rock mass pressure at the invert was relatively large. (3) The outer and inner sides of primary support arch steel rib was subjected to compression, and the stress distribution was relatively uniform and large. (4) The primary support shotcrete was mainly subjected to compression, and the stress distribution was basically characterized by bilateral symmetry. The stress distribution of shotcrete at the arch was relatively uniform and large, and the stress of shotcrete at the inverted part was relatively small. This paper studied the time-space law of supporting structure deformation in the shallow section of V grade surrounding rock, and designs the supporting parameters of V grade surrounding rock for large-span loess highway tunnel, which has guiding significance for the construction of similar projects in the future.
机译:当挖掘大跨度黄土隧道时,岩体受到干扰,并且难以在浅深度区域下形成承载拱。结果,结构变形是复杂的。本文分析了V型岩体级岩体的18个部分的变形和2个部分的初级支撑结构力在陕北黄岩交通扩建工程大跨度黄土公路隧道集团中的高速公路黄土隧道Jianzicha No.2隧道。分析的结果与FLAC 3D数值模拟相结合,研究了Jianzicha No.2隧道中岩体变形及初级载体的应力特性。结果表明,(1)拱形变形的时空关系曲线指示在施工中的施工中的“快速变形阶段 - 连续变形阶段 - 慢变形阶段”的三个阶段。 (2)隧道的岩体压力分布基本上呈现了双侧对称特性。拱的岩石质量压力分布相对均匀,逆变岩体压力相对较大。 (3)主支撑拱钢肋的外侧和内侧进行压缩,应力分布相对均匀且大。 (4)初级支撑射击晶体主要受压力,应力分布基本上是双侧对称性的。弓弓的应力分布相对均匀,大,倒置部分的吸收应力相对较小。本文研究了浅刻围岩浅段支撑结构变形的时空定律,为大跨度黄土公路隧道设计了V级周围岩石的支撑参数,对着类似项目的构建具有指导意义将来。

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