Distribution characteristics and the evolution law of excavation damage zone in the large-span transition section of high-speed railway tunnel based on microseismic monitoring

Ao Li, Dingli Zhang, Zhenyu Sun, Jun Huang, Fei Dong
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引用次数: 2

Abstract

PurposeThe microseismic monitoring technique has great advantages on identifying the location, extent and the mechanism of damage process occurring in rock mass. This study aims to analyze distribution characteristics and the evolution law of excavation damage zone of surrounding rock based on microseismic monitoring data.Design/methodology/approachIn situ test using microseismic monitoring technique is carried out in the large-span transition tunnel of Badaling Great Wall Station of Beijing-Zhangjiakou high-speed railway. An intelligent microseismic monitoring system is built with symmetry monitoring point layout both on the mountain surface and inside the tunnel to achieve three-dimensional and all-round monitoring results.FindingsMicroseismic events can be divided into high density area, medium density area and low density area according to the density distribution of microseismic events. The positions where the cumulative distribution frequencies of microseismic events are 60 and 80% are identified as the boundaries between high and medium density areas and between medium and low density areas, respectively. The high density area of microseismic events is regarded as the high excavation damage zone of surrounding rock, which is affected by the grade of surrounding rock and the span of tunnel. The prediction formulas for the depth of high excavation damage zone of surrounding rock at different tunnel positions are given considering these two parameters. The scale of the average moment magnitude parameters of microseismic events is adopted to describe the damage degree of surrounding rock. The strong positive correlation and multistage characteristics between the depth of excavation damage zone and deformation of surrounding rock are revealed. Based on the depth of high excavation damage zone of surrounding rock, the prestressed anchor cable (rod) is designed, and the safety of anchor cable (rod) design parameters is verified by the deformation results of surrounding rock.Originality/valueThe research provides a new method to predict the surrounding rock damage zone of large-span tunnel and also provides a reference basis for design parameters of prestressed anchor cable (rod).
基于微震监测的高速铁路隧道大跨度过渡段开挖损伤区分布特征及演化规律
目的微震监测技术在识别岩体发生破坏过程的位置、程度和机理方面具有很大的优势。本研究旨在基于微震监测资料,分析围岩开挖损伤区分布特征及演化规律。采用微震监测技术对京张高铁八达岭长城站大跨度过渡隧道进行了现场试验研究。建立智能微震监测系统,在山体表面和隧道内对称布置监测点,实现立体、全方位的监测效果。根据微震事件的密度分布,可将微震事件分为高密度区、中密度区和低密度区。将微震事件累计分布频率为60%和80%的位置分别确定为高中密度区和中低密度区边界。微震事件高密度区被认为是围岩开挖损伤高区,受围岩等级和隧道跨度的影响。给出了考虑这两个参数的不同隧道位置围岩高开挖损伤区深度预测公式。采用微震事件平均弯矩震级参数的标度来描述围岩的破坏程度。揭示了开挖破坏带深度与围岩变形之间的强正相关关系和多阶段特征。根据围岩高开挖损伤区深度,设计预应力锚索(杆),并通过围岩变形结果验证锚索(杆)设计参数的安全性。本研究为大跨度隧道围岩损伤区预测提供了一种新的方法,也为预应力锚索(杆)的设计参数提供了参考依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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