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Parametric assessment of soil-nailing retaining structures in cohesive and cohesionless soils

机译:粘性和非粘性土中土钉支护结构的参数评估

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Soil nailing is an effective stabilizing method for slopes and excavations and has been widely used worldwide. It is a reinforcing method using the shear strength of in-situ ground and the pull-out resistance of soil nailing. Research on numerical schemes of soil-nailing retaining structures has been quite intensive in the past three decades. 'Plaxis' finite-element modelling software is very commonly used for numerical simulations. There are difficulties associated with accurately modelling behaviours of these structures in both cohesive and cohesionless soils. Hence, in the present study, the significant influence of the shear strength of soil-nail cut and of the amount of surcharge on the structural behaviour of soil-nailing retaining walls is discussed. The results show that the soil's physical properties and surcharge directly influence the soil-nailing structures. Another important conclusion is that a soil-nailing structure consisting of nails and tiebacks can be considered a good alternative to improve the safety of excavation walls due to its satisfactory behaviour in the numerical simulations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:土钉是一种有效的坡度和开挖稳定方法,已在世界范围内广泛使用。它是利用原地的抗剪强度和土钉的抗拔力进行加固的方法。在过去的三十年中,对土钉支护结构的数值方案进行了大量的研究。 “ Plaxis”有限元建模软件非常常用于数值模拟。在黏性和非黏性土壤中精确建模这些结构的行为都存在困难。因此,在本研究中,讨论了土钉剪切强度和附加量对土钉挡土墙结构性能的重大影响。结果表明,土壤的物理性质和附加费直接影响土钉结构。另一个重要的结论是,由钉子和系杆组成的土钉结构由于其在数值模拟中的令人满意的行为,可以被认为是改善基坑墙安全性的良好选择。 (C)2015 Elsevier Ltd.保留所有权利。

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