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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Deep tunnel fronts in cohesive soils under undrained conditions: a displacement-based approach for the design of fibreglass reinforcements
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Deep tunnel fronts in cohesive soils under undrained conditions: a displacement-based approach for the design of fibreglass reinforcements

机译:在不介绍的条件下的粘性土壤中深入隧道前沿:一种基于位移的玻璃纤维增强剂的方法

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摘要

The fronts of tunnels excavated under particularly difficult ground conditions by employing conventional tunnelling methods are commonly supported: the stabilization is usually achieved either by improving the mechanical properties of the soil (injections, jet grouting, soil freezing, etc.) or by introducing linear inclusions. This last technique, consisting in the introduction of pipes (usually made of fibreglass reinforced polymers) in the front, is particularly popular since it is very simple to adapt the reinforcement geometry, length and number to the different conditions encountered during the excavation. The design of this reinforcement technique is nowadays based on very simplified approaches: on either empirical formula or the limit equilibrium method. In a previous paper, the authors numerically studied the mechanical response of unreinforced fronts in cohesive soils and defined a non-dimensional front characteristic curve. In this paper, the authors intend to take into consideration the role of reinforcements by following the same approach. A procedure allowing the definition of the reinforced non-dimensional front characteristic curve, once the reinforcement pattern is assigned, is introduced. The practical use of this curve is described.
机译:通常支持通过采用常规的隧道方法在特别难以基础条件下挖掘的隧道前部:稳定化通常通过改善土壤的机械性能(注射,喷射灌浆,土壤冻结等)或通过引入线性夹杂物来实现。这是在前面引入管道(通常由玻璃纤维增​​强聚合物制成)的最后一项技术特别受欢迎,因为它非常简单,适于使增强几何形状,长度和数量适应挖掘过程中遇到的不同条件。如今,基于非常简化的方法,这种加强技术的设计是:在经验公式或极限平衡方法上。在上一篇论文中,作者在数值上研究了在粘性土壤中未合成的前线的机械响应,并限定了非维度前方特征曲线。在本文中,提交人打算通过跟随相同的方法来考虑加强的作用。介绍了一旦分配了增强图案,允许加强非维度前部特性曲线定义的过程。描述了该曲线的实际使用。

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