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首页> 外文期刊>Tunnelling and underground space technology >Stability analysis of a non-circular tunnel face in soils characterized by modified Mohr-Coulomb yield criterion
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Stability analysis of a non-circular tunnel face in soils characterized by modified Mohr-Coulomb yield criterion

机译:修饰Mohr-Coulomb产量标准特征在土壤中非圆形隧道面的稳定性分析

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摘要

In many studies, the face stability evaluations of underground excavations have been performed with an equalarea circular tunnel face instead of the real tunnel shape. This equivalent method greatly facilitates the model construction, but sacrifices the calculation accuracy. To solve this issue, a non-circular tunnel is studied here to assess its face stability by kinematical approach where the discretization-based failure mechanism is used to describe the face failure. In the laboratory tests, it is also found that the soil strength in tensile regime is significantly reduced which is much smaller than the one described by the classical Mohr-Coulomb yield criterion. For this purpose, the tensile strength cut-off is introduced to define a linearly varying soil dilatancy angle with the rotation angle when the tensile stress can be expected in soils. On this basis, the failure mechanism has such a feature that the failure surface in tensile regime is accelerated to bend and eventually forms a rounded corner at the top. The proposed approach is compared with the existing methods in literature and the finite difference method of FLAC3D which proves that the proposed approach has sufficient accuracy and great efficiency. Finally, an engineering example of a tunnel in Hunan Province, China is studied using the proposed approach and some suggestions are given for practical tunnel excavations.
机译:在许多研究中,已经用均衡的圆形隧道面而不是实际隧道形状进行地下挖掘的面部稳定性评估。这种等效方法极大地促进了模型结构,但牺牲了计算精度。为了解决这个问题,这里研究了非圆形隧道,以通过运动方法来评估其面部稳定性,其中基于离散化的故障机制来描述面部故障。在实验室测试中,还发现拉伸状态下的土壤强度显着降低,其远小于经典MoHR-Coulomb产率标准所描述的。为此目的,引入拉伸强度截止截止,以限定当在土壤中可以预期拉伸应力时与旋转角度线性变化的土壤膨胀角。在此基础上,失效机构具有这样的特征,使得拉伸状态下的故障表面加速弯曲,最终形成顶部的圆角。将所提出的方法与文献中的现有方法与FLAC3D的有限差分方式进行比较,证明了所提出的方法具有足够的准确性和卓越的效率。最后,中国研究了湖南省隧道的工程例,采用了拟议的方法研究了一些建议,用于实用隧道挖掘。

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