结合稀疏多项式混沌展开的抗震盾构隧道面三维伪动态可靠性分析

IF 3.7 2区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING
Feng-qi Guo, Shi-wei Li, Jin-Feng Zou
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引用次数: 0

摘要

为解决城市和海底隧道建设中遇到的抗震工作面稳定性难题,提出了地震条件下盾构隧道工作面的高效概率分析框架。在极限分析上界理论的基础上,考虑到土壤介质的异质性,提出了一种改进的三维离散确定性机制来评估抗震工作面的稳定性。将稀疏多项式混沌扩展法(SPCE)与改进的伪动力学方法(MPD)相结合,构建了抗震隧道工作面破坏概率评估元模型。 通过与已发表的文献和数值模拟结果进行比较,验证了改进的确定性模型,并将 SPCE-MPD 元模型与传统的 MCS 方法进行了检验。在 SPCE-MPD 元模型的基础上,提出了地震对面层破坏概率和可靠性指数的影响,并进行了全局敏感性分析(GSA),以反映地震作用参数的影响顺序。最后,通过成都外环隧道的工程案例检验了所提出方法的有效性。结果表明,在地震烈度较高的地区,地震反应对隧道面稳定性的不确定性较大,而地震波速度的变化对隧道面稳定性的影响最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Three-dimensional pseudo-dynamic reliability analysis of seismic shield tunnel faces combined with sparse polynomial chaos expansion

Three-dimensional pseudo-dynamic reliability analysis of seismic shield tunnel faces combined with sparse polynomial chaos expansion

To address the seismic face stability challenges encountered in urban and subsea tunnel construction, an efficient probabilistic analysis framework for shield tunnel faces under seismic conditions is proposed. Based on the upper-bound theory of limit analysis, an improved three-dimensional discrete deterministic mechanism, accounting for the heterogeneous nature of soil media, is formulated to evaluate seismic face stability. The metamodel of failure probabilistic assessments for seismic tunnel faces is constructed by integrating the sparse polynomial chaos expansion method (SPCE) with the modified pseudo-dynamic approach (MPD). The improved deterministic model is validated by comparing with published literature and numerical simulations results, and the SPCE-MPD metamodel is examined with the traditional MCS method. Based on the SPCE-MPD metamodels, the seismic effects on face failure probability and reliability index are presented and the global sensitivity analysis (GSA) is involved to reflect the influence order of seismic action parameters. Finally, the proposed approach is tested to be effective by a engineering case of the Chengdu outer ring tunnel. The results show that higher uncertainty of seismic response on face stability should be noticed in areas with intense earthquakes and variation of seismic wave velocity has the most profound influence on tunnel face stability.

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来源期刊
Journal of Central South University
Journal of Central South University METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.10
自引率
6.80%
发文量
242
审稿时长
2-4 weeks
期刊介绍: Focuses on the latest research achievements in mining and metallurgy Coverage spans across materials science and engineering, metallurgical science and engineering, mineral processing, geology and mining, chemical engineering, and mechanical, electronic and information engineering
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