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A multi-scale analysis method for the simulation of tunnel excavation in sandy cobble stratum

机译:砂卵石地层隧道开挖模拟的多尺度分析方法

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摘要

Sandy cobble stratum is a kind of heterogeneous geological body. A further study on the safety of wall rocks and underground structure demands developing suitable analysis method to simulate tunnel excavation in such a formation. Macro-scale simulations assume the sandy cobble soil to be homogeneous in numerical models. They get more efficient computing, but have difficulties in capturing enough information about the meso-scopic fields needed. Meso-scale simulations explicitly represent the individual components of the heterogeneous internal material structure in numerical models, e.g. the shape and the spatial distribution of rocks. They achieve high accuracy, but large computational cost would be needed. To reduce the numerical effort with the precision guaranteed, a multi-scale analysis method for simulating tunnel excavation in sandy cobble strata is proposed. In this method, the numerical model is divided into two regions, involving the meso-scale region and macro-scale region. The meso-scale region is a critical sub-domain disturbed by tunnel excavation, in it, the rocks and soil are considered as separate constituents. In the macro domain, the sand gravel soil was regarded as homogeneous materials whose effective material parameters were determined using an equivalent homogenization method. Three critical issues in the multi-scale method are explored, including: (i) the determination of meso domain and macro domain, (ii) the determination of rock maximum size that can be homogenized in the meso domain and iii) the determination of effective material parameters of soil-rock mixture during the equivalent process. By comparing with simulation results predicted by macro-scale and meso-scale simulation methods, the validation of the proposed multi-scale simulation method was carried out. The result indicates that the proposed multi-scale analysis method has a high efficiency without loosening accuracy on the simulation of tunnel excavation in sandy cobble stratum.
机译:桑迪鹅卵石地层是一种非均质的地质体。对围岩和地下结构安全性的进一步研究要求开发合适的分析方法来模拟这种地层中的隧道开挖。宏观模拟假设数值模型中砂卵石土是均匀的。它们获得了更高的计算效率,但是在捕获有关所需的中视场的足够信息方面有困难。中尺度模拟清楚地表示了数值模型中异质内部材料结构的各个组成部分,例如岩石的形状和空间分布。它们实现了高精度,但是需要大量的计算成本。为了减少数值工作量并保证精度,提出了一种多尺度分析方法,对砂卵石地层中的隧道开挖进行模拟。在这种方法中,数值模型分为两个区域,包括中尺度区域和宏观尺度区域。中尺度区域是受隧道开挖干扰的关键子域,其中岩石和土壤被认为是单独的组成部分。在宏观领域,砂砾土被视为均质材料,其有效材料参数使用等效均质方法确定。探索了多尺度方法中的三个关键问题,包括:(i)确定细观域和宏观域,(ii)确定可以在细观域中均质的岩石最大尺寸,以及iii)确定有效范围。等效过程中土石混合料的材料参数。通过与宏观和中尺度模拟方法预测的模拟结果进行比较,对所提出的多尺度模拟方法进行了验证。结果表明,所提出的多尺度分析方法在砂卵石地层隧道开挖模拟中具有较高的效率,且不会降低精度。

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