机械化作业中考虑厚跨比修正的大断面隧道稳定性评价方法

Junru Zhang, Yumeng Liu, Bo Yan
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摘要

目的研究考虑厚跨比修正后的大断面隧道稳定性评价方法。设计/方法/途径首先,以黄黄梅高铁柳源隧道为例,以隧道开挖后拱顶围岩第三主应力挠度为判据,确定大断面隧道的临界埋深。然后,采用强度折减法计算不同岩石等级和厚跨比下的隧道安全系数,并进行数理统计,识别不同岩石等级下隧道安全系数与岩石厚跨比和基本质量(BQ)指标的关系。最后,考虑了厚跨比、地下水、岩石初始应力和构造姿态等因素的影响,得到了修正后的BQ,并在此基础上对某深度大于100 m的大断面隧道机械化施工过程中的稳定性进行了分析。并将该评价方法应用于重庆城市高速公路柳园隧道和慈目山2号隧道进行验证。研究结果表明:在不同岩石类别下,隧道安全系数是厚跨比的严格幂函数,而BQ是一定程度的线性函数。根据现场实际情况,采用修正后的BQ作为评价隧道稳定性的定量指标更为合适。现有的行业标准在评价隧道稳定性时没有考虑埋深和跨度的影响。本文提出的考虑覆盖层跨比修正的大断面隧道稳定性评价方法,对于双线高速铁路隧道全断面或大断面机械化开挖的围岩稳定性评价具有较高的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability evaluation method of large cross-section tunnel considering modification of thickness-span ratio in mechanized operation
PurposeThis study aims to research the large cross-section tunnel stability evaluation method corrected after considering the thickness-span ratio.Design/methodology/approachFirst, taking the Liuyuan Tunnel of Huanggang-Huangmei High-Speed Railway as an example and taking deflection of the third principal stress of the surrounding rock at a vault after tunnel excavation as the criterion, the critical buried depth of the large section tunnel was determined. Then, the strength reduction method was employed to calculate the tunnel safety factor under different rock classes and thickness-span ratios, and mathematical statistics was conducted to identify the relationships of the tunnel safety factor with the thickness-span ratio and the basic quality (BQ) index of the rock for different rock classes. Finally, the influences of thickness-span ratio, groundwater, initial stress of rock and structural attitude factors were considered to obtain the corrected BQ, based on which the stability of a large cross-section tunnel with a depth of more than 100 m during mechanized operation was analyzed. This evaluation method was then applied to Liuyuan Tunnel and Cimushan No. 2 Tunnel of Chongqing Urban Expressway for verification.FindingsThis study shows that under different rock classes, the tunnel safety factor is a strict power function of the thickness-span ratio, while a linear function of the BQ to some extent. It is more suitable to use the corrected BQ as a quantitative index to evaluate tunnel stability according to the actual conditions of the site.Originality/valueThe existing industry standards do not consider the influence of buried depth and span in the evaluation of tunnel stability. The stability evaluation method of large section tunnel considering the correction of overburden span ratio proposed in this paper achieves higher accuracy for the stability evaluation of surrounding rock in a full or large-section mechanized excavation of double line high-speed railway tunnels.
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