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注浆修复对损伤围岩扰动应力测试精度的效果分析

The Performance Analysis of Grouting Repair Effect on the Accuracy of Disturbance Stress Test in Damaged Surrounding Rock Mass.

作者信息

Zheng Minzong, Li Shaojun, Lu Yandu, Lu Xingan, Liu Liu

机构信息

State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China.

China Water Resources and Hydropower 14th Engineering Bureau Co., Ltd., Kunming 650041, China.

出版信息

Materials (Basel). 2024 Apr 22;17(8):1926. doi: 10.3390/ma17081926.

Abstract

Disturbance stress assessment is crucial for ensuring the safety of deep engineering projects. Currently, the primary technique for continuously monitoring three-dimensional disturbance stress is the stress relief method, but its accuracy can be compromised by rock damage that occurs after excavation. To mitigate this issue, grouting is employed to repair damaged rock masses and enhance their mechanical properties. However, the impact of grouting techniques on improving the accuracy of disturbance stress testing is challenging to evaluate through laboratory and in situ experiments. To address this problem, numerical simulation technology is employed to investigate disturbance stress testing after the repair of damaged surrounding rock through grouting. The simulation results indicate that grouting repair significantly enhances the accuracy of stress testing. As the depth of damaged rock mass repair increases, the error in stress testing decreases. Achieving complete repair of the initial damage zone during grouting is essential to eliminate errors in stress testing. Expanding on the positive effects of grouting repair on stress testing, a segmented testing method for disturbance stress is proposed. The method involves separately testing the initial stress and stress changes, thereby reducing the stress level within the rock, minimizing rock failure, and enhancing the accuracy of disturbance stress testing. This study provides valuable reference methods, and the outcomes of this research will serve as a foundation for enhancing the accuracy of disturbance stress testing in deep hard rock engineering.

摘要

扰动应力评估对于确保深部工程项目的安全至关重要。目前,连续监测三维扰动应力的主要技术是应力解除法,但开挖后发生的岩石损伤会影响其精度。为缓解此问题,采用注浆修复受损岩体并提高其力学性能。然而,通过实验室和现场试验评估注浆技术对提高扰动应力测试精度的影响具有挑战性。为解决此问题,采用数值模拟技术研究注浆修复受损围岩后的扰动应力测试。模拟结果表明,注浆修复显著提高了应力测试精度。随着受损岩体修复深度的增加,应力测试误差减小。注浆过程中实现初始损伤区的完全修复对于消除应力测试误差至关重要。基于注浆修复对应力测试的积极影响,提出了一种扰动应力分段测试方法。该方法分别测试初始应力和应力变化,从而降低岩石内部的应力水平,减少岩石破坏,提高扰动应力测试精度。本研究提供了有价值的参考方法,研究成果将为提高深部硬岩工程中扰动应力测试精度奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df49/11051714/5837dfc097c5/materials-17-01926-g001.jpg

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