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Reliability Analysis of Soil Nail Walls against External Failures in Layered Ground

机译:层状地基中土钉墙抗外部破坏的可靠性分析

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This study presents reliability analyses of soil nail walls (SNWs) against global and sliding stability failures in layered ground. The load and resistance factor design (LRFD) has been studied and advocated for SNW design over the past few years. However, the majority of those studies were exclusively focused on SNWs in single-layer ground and few have investigated the case of layered ground. In this paper, the reliability is evaluated using the first-order reliability method (FORM) for SNWs that are designed based on traditional working stress design (WSD) methods. Based on analyses of a great variety of combinations of two soils, a stiff clay layer and a dense sand layer, reliability indices calibrated from traditional WSD exceed 3.0 for global stability designs but may be lower than 3.0 for sliding stability designs. This study also reveals that the sequence and the thickness ratio of layers are two important factors for the reliability of both global and sliding stability modes. SNWs in layered ground usually have a higher reliability of global stability than SNWs in single-layer ground. The influences of model uncertainty and soil spatial variability on the reliability are also investigated. These findings will help the future development of LRFD for SNWs.
机译:这项研究提出了针对分层地面中整体和滑动稳定性破坏的土钉墙(SNW)的可靠性分析。在过去的几年中,已经针对SNW设计研究了负载和阻力因子设计(LRFD)。但是,这些研究中的大多数专门针对单层地面的SNW,很少研究层状地面的情况。在本文中,使用一阶可靠性方法(FORM)对基于传统工作压力设​​计(WSD)方法设计的SNW进行了可靠性评估。根据对两种土壤,硬质粘土层和致密砂层的多种组合的分析,对于整体稳定性设计,传统WSD校准的可靠性指标超过3.0,但对于滑动稳定性设计,可靠性指标可能低于3.0。该研究还表明,层的层序和厚度比是整体和滑动稳定模式可靠性的两个重要因素。分层地面中的SNW通常比单层地面中的SNW具有更高的全局稳定性可靠性。还研究了模型不确定性和土壤空间变异性对可靠性的影响。这些发现将有助于SNFD的LRFD的未来发展。

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