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FEM analysis on stability of shaft frozen wall in rich water sandstone

机译:富水砂岩中轴冷冻墙稳定性的有限元分析

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Based on the theory of three-dimensional elastic-plastic seepage, the prediction of sandstone displacement and stress distribution law of the shaft frozen wall in Xiaozhuang Coal Mine was calculated.The prediction of sandstone displacement of frozen wall is performed by FEM numerical calculation.The results indicate that the biggest radial displacement was 2.036 × 10-3 m when the thickness of frozen wall and roadway height were 2.5 m and 4 m, respectively, which could meet the requirements of safety regulations that the radial displacement should not exceed 50 mm and would not cause damage to the frozen pipe.The result showed that the design of frozen wall thickness and roadway height was proper, which can ensure the construction smooth.The actual monitoring data were basically consistent with predictive value.The study shows that FEM calculation could well predicate the radial displacement of frozen wall, and it is a quilt effective way of research to predicate stability of surrounding rock.
机译:基于三维弹塑性渗透理论,计算了小庄煤矿砂岩位移和应力分布规的预测。冻结壁砂岩位移的预测由FEM数值计算进行。结果表明,当冷冻墙和道路高度的厚度分别为2.5米和4米,最大径向位移分别为2.036×10-3米,这可以满足径向位移不超过50毫米的安全规定的要求不会对冷冻管造成损坏。结果表明,冻结壁厚和道路高度的设计适当,可以确保施工顺畅。实际监测数据与预测值基本一致。研究表明,有限元计算可能良好地谓词冻结壁的径向位移,并且是一种被子的有效的研究,以涉及环绕性的稳定性g岩石。

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