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首页> 外文期刊>Journal of Mechanical Science and Technology >Numerical and experimental method to determine the boring diameters of a two-stage TBM cutterhead to prevent rock burst
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Numerical and experimental method to determine the boring diameters of a two-stage TBM cutterhead to prevent rock burst

机译:确定两级TBM刀盘的防钻直径的数值和实验方法

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摘要

A two-stage tunnel boring machine (TBM) cutterhead with a pilot-enlargement boring method was presented to reduce the risk of rock bursts resulting from boring with a TBM with a large flat-face cutterhead. A reduced scale similarity experiment was designed on rock tunnel boring to determine the boring diameters of the two stages, and numerical simulation models were built. A micron X-ray computerized tomography system was adopted to examine the failure area of the excavated testing piece and validate the numerical models. Stress distribution and energy release rate (ERR) were used in the numerical simulations to evaluate the rock burst risk of the boring process. Experimental and numerical results show that rock burst is prone to occur in the upper, lower, and side areas of the surrounding rock around the tunnel, and risk increases with the lateral pressure coefficient and boring diameter. The optimal boring diameter ratio of stages 1 to 2 was determined between 0.55 and 0.59. Meanwhile, the ERR of the designed two-stage cutterhead is approximately 60% smaller than that of the flat-face cutterhead.
机译:提出了一种采用先导扩孔法的两级隧道掘进机(TBM)刀盘,以减少因使用大平面刀盘的TBM进行镗孔而导致的岩石爆裂风险。在岩石隧道钻孔中设计了一个缩小比例的相似性实验,以确定两个阶段的钻孔直径,并建立了数值模拟模型。采用微米X射线计算机断层扫描系统检查开挖试件的失效区域并验证数值模型。在数值模拟中使用应力分布和能量释放率(ERR)来评估钻孔过程中岩爆的风险。实验和数值结果表明,隧道周围围岩的上部,下部和侧面易发生岩爆,且风险随侧向压力系数和钻孔直径的增加而增加。确定阶段1至阶段2的最佳镗孔直径比在0.55至0.59之间。同时,设计的两级刀盘的ERR大约比平面刀盘的ERR小60%。

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