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EFFICIENT RELIABILITY-BASED DESIGN TOOL FOR REINFORCED EARTH RETAINING WALLS OF HEAVY HAUL RAILWAY CONSIDERING INTERNAL FAILURE MODES

机译:考虑内部故障模式的高效地球挡土墙的高效可靠性设计工具

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This paper presents the development and demonstration of an efficient reliability-based tool for the reinforced earth retaining wall design in heavy haul railway. Here, two major internal failure modes, rupture and pullout, are the focus in the demonstration. The First-Order Reliability Method (FORM) is adopted to estimate the probability of failure for each failure mode, and is implemented in a spreadsheet. The reliability analysis is conducted with the consideration of the effect of uncertainty in the reinforcement length, horizontal and vertical spacing between steel strips, tensile strength of steel strips as well as the material property of the backfills. Using this design tool, a few candidate designs can be easily obtained by meeting the acceptable probability of failure and the final design is determined based on cost. The results obtained using FORM are also verified by comparing with those from Monte Carlo simulation. This design tool is shown to be simple to use in the retaining wall design of the railway engineering.
机译:本文介绍了钢铁铁路中加强地球挡土墙设计的高效可靠性工具的开发和演示。在这里,两个主要的内部失败模式,破裂和拉出,是演示中的重点。采用一阶可靠性方法(表单)来估计每个故障模式的故障概率,并在电子表格中实现。考虑到钢带之间的增强长度,水平和垂直间隔,钢带的拉伸强度以及回水的材料特性,考虑到不确定度的效果来进行可靠性分析。使用这种设计工具,通过满足故障的可接受可能性,可以轻松获得一些候选设计,并且基于成本确定最终设计。还通过与来自蒙特卡罗模拟的人进行比较来验证使用形式获得的结果。该设计工具被证明在铁路工程的挡土墙设计中使用简单。

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