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Grouting Reinforcement of Shallow and Small Clearance Tunnel

机译:浅埋隧道灌浆加固

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摘要

In order to solve the problem that shallow and small clearance tunnels are easy to cause city road to collapse and chapped, taking the Jinan Yuhan Road Tunnel under typical geological conditions as the research object, the stability criterion of the middle soil wall is determined using a mechanical model of the tunnel middle wall. A grouting test under different loads of undisturbed soil in the tunnel is designed, and numerical simulation of the grouting of the middle wall of different tunnel depths and spacing is performed. The results show that the stability of the middle wall of the shallow and small clearance tunnel is related to depth, spacing, and the physical-mechanical properties of soil. The physical-mechanical properties of soil change little after grouting reinforcement with the same final grouting pressure as the burial depth increases. The stability criterion curve of the middle wall of Yuhan Road Tunnel is obtained by the measurement results of grouting test samples, and the numerical simulation results obtained by the experimental parameters have a high degree of agreement with the theoretical curve. Based on the stability criterion curve, sectional grouting was performed in Yuhan Road Tunnel, and the soil around the tunnel was successfully reinforced.
机译:为了解决浅和小清关隧道易于造成城市道路塌陷和切碎的问题,以典型的地质条件为济南玉汉路隧道作为研究对象,使用A确定中间土壁的稳定性标准隧道中墙的机械模型。设计了在隧道中不同负荷的灌浆试验,进行了不同隧道深度和间隔的中间壁灌浆的数值模拟。结果表明,浅层和小间隙隧道中壁的稳定性与土壤的深度,间距和物理力学性能有关。随着埋藏深度的增加,灌浆加固后土壤的物理力学性能少得多。玉汉道路隧道中壁的稳定性标准曲线通过灌浆试验样品的测量结果获得,并且通过实验参数获得的数值模拟结果与理论曲线具有高度的协议。基于稳定性标准曲线,在玉汉道路隧道中进行截面灌浆,并成功增强了隧道周围的土壤。

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