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首页> 外文期刊>International journal of geomechanics >Stress Responses Associated with Earth Pressure Balance Shield Tunneling in Dry Granular Ground Using the Discrete-Element Method
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Stress Responses Associated with Earth Pressure Balance Shield Tunneling in Dry Granular Ground Using the Discrete-Element Method

机译:使用离散元件法与干燥粒状地面压力平衡屏蔽隧穿相关的应力响应

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摘要

This study investigates stress responses associated with earth pressure balance (EPB) shield tunneling in dry granular ground. A numerical model using the discrete-element method (DEM) was employed to simulate both the advancement of EPB shield and the discharge of muck from the chamber. Some critical ground stress variations associated with tunneling were thus effectively captured. Numerical results show that the responses of the principal stress in dry granular ground, namely changes of magnitude and rotation angle, significantly depend on both the discharge rate of muck and the distance from tunnel face. The average value and distribution features of stress at the tunnel face are also subjected to the discharge rates of muck in the shield chamber. To be specific, in the case without muck discharge out of the chamber, the average stress at the tunnel face first increases with increases in advancement distance and subsequently tends toward a stable value. But for the case of discharging muck with an upper limit rate, the stress first decreases rapidly to a minimum value and subsequently increases to a stable value. Further, a significant stress release area is also found in the proximity of the tunnel face, and the changes in the contact forces among soil particles are far less than those in the case without muck discharge.
机译:本研究调查了干燥粒状地面压力平衡(EPB)屏蔽隧穿相关的应力响应。采用了使用离散元法(DEM)的数值模型来模拟EPB屏蔽的进步和从腔室中的垫子排出。因此有效地捕获了与隧道相关相关的一些关键地应力变化。数值结果表明,干燥粒状地面主应力的响应,即幅度和旋转角度的变化,显着取决于摩克的排放率和隧道面的距离。隧道面的应力的平均值和分布特征也经受屏蔽室中的渣滓的放电速率。具体而言,在没有腔室的情况下的情况下,隧道面的平均应力首先随着前进距离的增加而增加,随后倾向于稳定的值。但是对于以上限速率排出的情况下,应力首先将迅速降低到最小值,随后增加到稳定的值。此外,在隧道面附近也发现了显着的应力释放区域,并且土壤颗粒之间的接触力的变化远远低于没有蒙克放电的情况下的接触力。

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