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Deformation characteristics observed during multi-step excavation of underground oil storage caverns based on field monitoring and numerical simulation

机译:基于现场监测和数值模拟的地下储油洞多步挖掘期间观察到的变形特性

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摘要

The sequential excavation method (SEM) is extremely useful for excavating caverns with high sidewalls and large spans. A new SEM for excavating large-scale underground water-sealing oil storage caverns and protecting groundwater level is proposed. The method is applied to practice successfully and the excavation characteristics were studied using monitoring datasets. Through finite element simulations, the differences between the proposed method and three-bench three-step method were compared. The influence of the section shape, bench division, and face-advancing sequences on the deformation characteristics observed in multi-step excavation was analyzed. The results showed that the maximum deformation of the excavation face was approximately 4-5 mm, and the maximum deformation rate of surrounding rock was approximately 0.8 mm/day. At 20 days after excavation, although the deformation characteristics of surrounding rock were stable, internal displacement would continue for a long time. The standard circular arch and one-step arching were useful for settlement control, and the middle drift facilitated geological forecast and water exploration. However, the more complex the bench division of the arch, the more noticeable is the stress concentration.
机译:顺序挖掘方法(SEM)对于挖掘高侧壁和大跨度的洞穴非常有用。提出了一种用于挖掘大规模地下水密封储油洞穴和保护地下水位的新型SEM。该方法应用于成功练习,并使用监视数据集进行挖掘特性。通过有限元模拟,比较了所提出的方法与三步三步方法之间的差异。分析了截面形状,台面和面部推进序列对多步挖掘中观察到的变形特性的影响。结果表明,挖掘面的最大变形约为4-5mm,周围岩石的最大变形率约为0.8毫米/天。在挖掘后20天,虽然周围岩石的变形特性稳定,但内置的内部位移将持续很长时间。标准圆形拱形和一步拱形对沉降控制有用,中间漂移有助于地质预测和水勘探。然而,拱门的卧式划分越复杂,压力浓度越明显。

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