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Reliability-Based Analysis of Internal Limit States for MSE Walls Using Steel-Strip Reinforcement

机译:基于钢带加固的MSE墙内部极限状态的可靠性分析

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This paper demonstrates reliability-based analysis of tensile strength and pullout limit states for mechanically stabilized earth (MSE) walls constructed with steel-strip reinforcement. Five different reinforcement tensile load models, three different pullout models, and one tensile strength model were examined. The accuracy of each model was assessed probabilistically using bias statistics in which bias was the ratio of the measured value to the predicted value. The tensile limit state included uncertainty in the tensile strength due to variability in original strength of the steel and variability in potential loss of strength due to corrosion. Reliability-based analyses were carried out considering the accuracy of the load and resistance models that appear in each limit state equation plus uncertainty due to the confidence (level of understanding) of the engineer at the time of design. The reliability index was computed using Monte Carlo simulation of the tensile strength limit state and a convenient closed-form solution that is easily implemented in a spreadsheet for the pullout limit state. A MSE wall example was used to demonstrate the general approach and to compare margins of safety using different load and resistance model combinations and reinforcement strips of different initial thickness.
机译:本文演示了基于可靠性的钢带加固构造的机械稳定土(MSE)墙的抗拉强度和拉拔极限状态分析。检查了五个不同的钢筋拉伸载荷模型,三个不同的拉拔模型和一个拉伸强度模型。每个模型的准确性均使用偏差统计数据概率性评估,其中偏差是测量值与预测值的比率。拉伸极限状态包括由于钢的原始强度的变化而导致的拉伸强度的不确定性以及由于腐蚀而导致的潜在强度损失的变化性。考虑到出现在每个极限状态方程中的负载和电阻模型的准确性以及由于工程师在设计时的置信度(理解水平)而导致的不确定性,进行了基于可靠性的分析。可靠性指标是使用抗拉强度极限状态的蒙特卡洛模拟和便捷的封闭式解决方案计算出来的,该解决方案可以轻松地在电子表格中针对拉出极限状态进行实施。以MSE墙为例来说明通用方法,并使用不同的载荷和阻力模型组合以及不同初始厚度的增强条来比较安全裕度。

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