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An efficient probabilistic back-analysis method for braced excavations using wall deflection data at multiple points

机译:利用多点墙体变形数据的高效率支护开挖概率反分析方法

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摘要

This paper presents an efficient Bayesian back-analysis procedure for braced excavations using wall deflection data at multiple points. Response surfaces obtained from finite element analyses are adopted to efficiently evaluate the wall responses. Deflection data for 49 wall sections from 11 case histories are collected to characterize the model error of the finite element method for evaluating the deflections at various points. A braced excavation project in Hang Zhou, China is chosen to illustrate the effectiveness of the proposed procedure. The results indicate that the soil parameters could be updated more significantly for the updating that uses the deflection data at multiple points than that only uses the maximum deflection data. The predicted deflections from the updated parameters agree fairly well with the field observations. The main significance of the proposed procedure is that it improves the updating efficiency of the soil parameters without adding monitoring effort compared with the traditional method that uses the maximum deflection data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种有效的贝叶斯反分析方法,该方法利用多点墙体变形数据进行支撑开挖。通过有限元分析获得的响应面可以有效地评估壁的响应。收集来自11个案例历史记录的49个墙段的挠度数据,以表征评估各个点挠度的有限元方法的模型误差。选择了中国杭州的一个支护开挖项目来说明所提出的程序的有效性。结果表明,与仅使用最大挠度数据相比,对于使用多点挠度数据的更新,可以更显着地更新土壤参数。根据更新的参数预测的挠度与现场观测非常吻合。与使用最大挠度数据的传统方法相比,该方法的主要意义在于它提高了土壤参数的更新效率,而无需增加监视工作量。 (C)2016 Elsevier Ltd.保留所有权利。

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