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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Finite element evaluation of the effects of faulting on a shallow tunnel in alluvial soil
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Finite element evaluation of the effects of faulting on a shallow tunnel in alluvial soil

机译:冲积土中浅埋隧道断层影响的有限元评估

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摘要

A numerical estimation is presented on the effects induced in an existing tunnel by the development of a fault from the deep bedrock during a seismic event. The spreading of the fault within the alluvial deposit hosting the tunnel, and the consequent effects on its permanent liner, are studied in static conditions through a series of elastic-plastic, plane strain finite element analyses. They account for the reduction of the shear strength and stiffness characteristics of the faulting zone with increasing irreversible strains. Even though the calculations require only "standard", e. g. peak and residual, material parameters it is shown that these properties can hardly be obtained for the alluvial deposit at hand. To overcome this drawback a relatively large scale in-situ tests could be performed and its results could be interpreted through a suitable back analysis. This would permit characterizing the numerical model to be subsequently adopted for the analysis of the faulting process.
机译:通过地震事件期间深基岩断层的发展,对现有隧道引起的影响进行了数值估算。通过一系列弹塑性,平面应变有限元分析,研究了断层在容纳隧道的冲积层中的扩散及其对永久衬砌的影响。它们说明了随着不可逆应变的增加,断层带的剪切强度和刚度特性降低。即使计算仅需要“标准”,e。 G。峰值和残留物的材料参数表明,对于手头的冲积层很难获得这些性能。为了克服这个缺点,可以进行相对大规模的原位测试,并且可以通过适当的反向分析来解释其结果。这将允许表征数值模型,随后将其用于故障过程的分析。

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