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Safety Threshold Determination for Blasting Vibration of the Lining in Existing Tunnels under Adjacent Tunnel Blasting

机译:相邻隧道爆破下现有隧道衬砌衬砌爆破振动的安全阈值确定

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The effects of tunnel blast excavation on the lining structures of adjacent tunnels are comprehensively studied for the Xinling highway tunnel project. First, the LS-DYNA software is applied to obtain the characteristics of vibration velocities and dynamic stresses at different positions of the tunnel liner. The results indicate that the maximum peak particle velocity (PPV) is located on the haunch of the lining facing the blasting source and that the PPV and peak tensile stress decrease with the increase in the surrounding rock grade. Second, a site test on blasting vibration is conducted to verify the simulation results. By using regression analysis of the measured vibration data, the calculation method of maximum charge per delay for optimizing blasting excavation under different surrounding rock grades is obtained. Finally, based on the statistical relationship between crack alteration and PPV on the lining before and after blasting, the safety thresholds of PPV for different portions of the tunnel are determined. The recommended safety threshold of PPV is 10?cm/s for intact lining and for B-grade and V-grade linings of the surrounding rock tunnel. However, if the lining crack grade falls between 1A and B, then the recommended safety thresholds of PPV for the III-grade and IV-grade surrounding rock tunnel are 5?cm/s and 6?cm/s, respectively. The threshold PPV proposed in this study has been successfully applied to restrict blast-induced damage during new tunnel excavation of the Xinling tunnel project.
机译:新岭公路隧道工程综合研究了隧道爆破挖掘对相邻隧道衬砌结构的影响。首先,应用LS-DYNA软件以获得隧道衬里不同位置处的振动速度和动态应力的特征。结果表明,最大峰粒子速度(PPV)位于面向爆破源的衬里的HUN统计上,并且PPV和峰值拉应力随周围岩石等级的增加而降低。其次,进行了对爆破振动的网站测试以验证模拟结果。通过使用测量振动数据的回归分析,获得了在不同周围岩石等级下优化爆破挖掘的每个延迟的最大电荷的计算方法。最后,基于爆破前后衬里的裂缝改变和PPV之间的统计关系,确定了隧道不同部分的PPV的安全阈值。 PPV的推荐安全阈值为10?cm / s,用于完整衬里,适用于周围岩石隧道的B级和V级衬里。然而,如果衬里裂缝级落在1a和b之间,那么III级和IV级周围岩石隧道的推荐安全阈值分别为5Ωcm/ s和6Ωcm/ s。本研究中提出的阈值PPV已成功应用于在新岭隧道项目的新隧道挖掘过程中限制爆炸引起的损坏。

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