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首页> 外文期刊>Tunnelling and underground space technology >Integrating uncertainty into geotechnical design of underground openings in tectonically undisturbed but lithologically varied sedimentary environments
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Integrating uncertainty into geotechnical design of underground openings in tectonically undisturbed but lithologically varied sedimentary environments

机译:整合在构造不受干扰但岩性变化沉积环境中的地下开口岩土设计的不确定性

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A systematic but straightforward probabilistic approach was adopted for the preliminary design using a tunnel case in Egnatia Odos Highway. This tunnel was excavated in a heterogenous molassic formation in Northern Greece, and more specifically in tectonically undisturbed but lithologically varied sedimentary series. This research aimed to identify sources of uncertainty and evaluate its governance during the selection of the geotechnical design parameters. Rigorous analyses of the critical parameters and factors were undertaken following a standardised method for designing underground structures based on the probability theory. Initially, the statistical analysis of the intact rock strength parameters and project-specific geological and geotechnical factors allowed the development of understanding in determining these sources of uncertainty and assisted in quantifying them. The lithological units encountered in the tunnel alignment were classified into first, Geological Units and, secondly, into Rock Mass Types (Geotechnical Units). Finally, the latter were grouped into anticipated Rock Mass Behaviour Types, which were numerically investigated using RS2 for the Finite Element Method analysis and Unwedge to assess these Rock Mass Types & rsquo; failure modes. For this purpose, the Point Estimate Method was used in the FEM analysis to evaluate the effect of uncertainty in the strength parameters. Ultimately, the numerical analysis results subsequently led to the preliminary design of the respective support sections. Although this investigation was limited by the geotechnical information provided, it was concluded that the approach followed proved to be adequate in identifying the primary sources of uncertainty and its impact on geotechnical design. It was also noted that with more detailed geological information, this probabilistic approach could be used to produce a robust final support tunnel design.
机译:使用隧道案例在Egnatia Odos公路中采用了系统但简单的概率方法。该隧道在希腊北部的异源性糖尿病中挖掘出来,更具体地,在根本上不受干扰但岩性变化的沉积系列。该研究旨在确定不确定性的来源,并在选择岩土设计参数期间评估其治理。基于概率理论的地下结构的标准化方法,进行了严格的关键参数和因素的分析。最初,对完整的岩石强度参数和项目特定地质和岩土工程因素的统计分析使得在确定这些不确定来源并协助量化它们时,允许在制定谅解方面的发展。在隧道对准中遇到的岩性单元分为第一,地质单位,其次,并将其分为岩体(岩土机械单元)。最后,后者被分组为预期的岩体肿块行为类型,这些类型是使用RS2进行数值研究,以便有限元方法分析和无保留的这些岩石质量类型和rsquo;失败模式。为此目的,在有限元分析中使用点估计方法来评估不确定性在强度参数中的影响。最终,数值分析结果随后导致了各个支撑部分的初步设计。虽然这项调查受到所提供的岩土信息的限制,但得出结论是,该方法随后被证明是充分确定识别初级不确定性的主要来源及其对岩土设计的影响。还注意到,通过更详细的地质信息,这种概率方法可用于生产强大的最终支持隧道设计。

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