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首页> 外文期刊>Shock and vibration >Simulating the Formation of Blasting-Excavation-Induced Zonal Integration in Deep Tunnels with an Elastoplastic Damage Model
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Simulating the Formation of Blasting-Excavation-Induced Zonal Integration in Deep Tunnels with an Elastoplastic Damage Model

机译:用弹塑性损伤模型模拟爆破挖掘诱导的爆破挖掘诱导的区域集成

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More deep tunneling projects will be constructed due to the increasing demand of underground energy and resource. The zonal disintegration phenomena are frequently encountered with the surrounding rock of deep tunnels. To explain the mechanisms underlying the formation of zonal disintegration, an elastoplastic damage model and failure criterion are proposed in this study based on the strain gradient theory and the damage property of rock mass. A coupling calculation subroutine is thereafter developed by the ABAQUS code. The dynamic formation and development regularity of zonal disintegration in the deep tunnel are simulated by this subroutine. The radial displacement, radial stress, and tangential stress show the oscillated variation of peaks and troughs alternately. The coupling effect of the blasting load and the initial geostress transient unloading leads to the variation of alternation oscillation in the surrounding rock stress field, which is an important reason for the zonal disintegration of the surrounding rock. The morphological characteristics of fractured zones and nonfractured zones obtained from numerical simulations are in good agreement with the results from the in situ observations, which confirm the correctness and feasibility of the damage and numerical approach. The method proposed in the current study can be utilized to provide a basis for the prediction and supporting design of fractured modes.
机译:由于地下能源和资源的需求日益增加,将构建更多的深层隧道项目。围绕深隧道的周围岩石经常遇到区域崩解现象。为了解释区域崩解的形成的机制,基于应变梯度理论和岩体的损伤性,提出了弹性损伤模型和失效标准。此后由ABAQUS代码开发耦合计算子程序。这种子程序模拟了深隧道中带状崩解的动态形成和发展规律。径向位移,径向应力和切向应力显示峰值和槽的振荡变化交替。爆破载荷的耦合效应和初始热结瞬态卸载导致周围岩石应力场的交替振荡的变化,这是周围岩石的区域崩解的重要原因。从数值模拟中获得的裂缝区和非裂缝区的形态学特征与原位观察结果吻合良好,这证实了损伤和数值方法的正确性和可行性。本研究中提出的方法可用于提供裂缝模式的预测和支撑设计的基础。

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