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New Analytical Approaches for Evaluating the Performance of Systematic Pre-tensioned Fully Grouted Rockbolts in Tunnel Stabilization

机译:评估系统预应力全注浆锚杆在隧道稳定中性能的新分析方法

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In this paper, two new analytical approaches are presented on the basis of convergence-confinement method to compute both the ultimate convergence of circular tunnel and its plastic zone having been reinforced by systematically pre-tensioned fully grouted rockbolts. The models have two basic assumptions: (1) the grouted rockbolts increase the radial internal pressure within a broken rock mass by both the pre-tensioned force and the probable following induced force due to rock mass movement (2) tunnel convergence (specially short-term) occurs only due to reducing and diminishing of the radial constrained stress on tunnel surface provided by the working face. Hence, the values of both the pre-tensioned pressure and the mentioned radial constrained stress are specially taken into consideration in this paper. That is, according to their magnitudes, two different conditions occur: the magnitude of pre-tensioned pressure is greater than that of the constrained stress at bolt installation time and vice versa. The solutions are extended to each of conditions, and illustrative examples are solved. The proposed approaches predicting almost identical results show that pre-tensioning of grouted rockbolts will increase the efficiency and effectiveness of rockbolts.
机译:本文在收敛约束法的基础上,提出了两种新的解析方法,分别计算了圆形隧道及其塑性区的极限收敛。该模型有两个基本假设:(1)灌浆的锚杆由于岩体运动而通过预张紧力和可能的跟随感应力来增加破碎岩体中的径向内部压力(2)隧道收敛(特别是短时术语“发生”仅是由于工作面所提供的隧道表面上的径向约束应力的减小和减小。因此,本文特别考虑了预应力和上述径向约束应力的值。也就是说,根据其大小,会出现两种不同的情况:预紧压力的大小大于螺栓安装时的受约束压力的大小,反之亦然。将解决方案扩展到每个条件,并解决示例性示例。所提出的预测几乎相同结果的方法表明,注浆锚杆的预张紧将提高锚杆的效率和有效性。

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