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大型地下洞室群边墙劈裂破坏:数值模拟与现场研究

Splitting failure in side walls of a large-scale underground cavern group: a numerical modelling and a field study.

作者信息

Wang Zhishen, Li Yong, Zhu Weishen, Xue Yiguo, Yu Song

机构信息

Geotechnical and Structural Engineering Research Center, Shandong University, Jinan, 250061 Shandong Province People's Republic of China.

Geotechnical and Structural Engineering Research Center, Shandong University, Jinan, 250061 Shandong Province People's Republic of China ; School of Civil Engineering, Shandong University, Jinan, 250061 Shandong Province People's Republic of China.

出版信息

Springerplus. 2016 Sep 13;5(1):1528. doi: 10.1186/s40064-016-3214-1. eCollection 2016.

Abstract

Vertical splitting cracks often appear in side walls of large-scale underground caverns during excavations owing to the brittle characteristics of surrounding rock mass, especially under the conditions of high in situ stress and great overburden depth. This phenomenon greatly affects the integral safety and stability of the underground caverns. In this paper, a transverse isotropic constitutive model and a splitting failure criterion are simultaneously proposed and secondly programmed in FLAC3D to numerically simulate the integral stability of the underground caverns during excavations in Dagangshan hydropower station in Sichuan province, China. Meanwhile, an in situ monitoring study on the displacement of the key points of the underground caverns has also been carried out, and the monitoring results are compared with the numerical results. From the comparative analysis, it can be concluded that the depths of splitting relaxation area obtained by numerical simulation are almost consistent with the actual in situ monitoring values, as well as the trend of the displacement curves, which shows that the transverse isotropic constitutive model combining with the splitting failure criterion is appropriate for investigating the splitting failure in side walls of large-scale underground caverns and it will be a helpful guidance of predicting the depths of splitting relaxation area in surrounding rock mass.

摘要

由于围岩的脆性特征,尤其是在高地应力和大埋深条件下,大型地下洞室在开挖过程中,侧墙常出现竖向劈裂裂缝。这种现象极大地影响了地下洞室的整体安全性和稳定性。本文同时提出了横观各向同性本构模型和劈裂破坏准则,并在FLAC3D中进行二次编程,对我国四川省大岗山水电站地下洞室开挖过程中的整体稳定性进行数值模拟。同时,还对地下洞室关键点的位移进行了现场监测研究,并将监测结果与数值结果进行了对比。通过对比分析可知,数值模拟得到的劈裂松弛区深度与实际现场监测值基本一致,位移曲线趋势也相符,这表明横观各向同性本构模型结合劈裂破坏准则适用于研究大型地下洞室侧墙的劈裂破坏,对预测围岩劈裂松弛区深度具有指导意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faa4/5020022/6c3b6b2ebfcf/40064_2016_3214_Fig1_HTML.jpg

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