Difference of “whole-process and stages” response law of energy evolution regulated by high energy storage rock modification

Xingping Lai , Shuai Zhang , Jiantao Cao , Yao Sun , Feilong Xin
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Abstract

Aiming at the technical problems of regional rock burst control and disaster reduction, the indoor comparative tests of three kinds of variables are designed, involving water content, borehole diameter and borehole filling materials. This research analyzed the characteristics of the whole process of energy evolution of rock impacted by different regulation methods, and revealed the differences and applicable conditions of different regulation methods in reducing the impact mechanism. The results show that different control methods can effectively change the mechanical parameters of the target object. There are significant stage differences in the energy evolution of impact rocks. By constructing the energy conversion efficiency model, the study further elaborated on the water injection softening mechanism of "release first and then weaken", the drilling pressure relief mechanism of "guide first and then release" and the filling strengthening regulation mechanism of "release first and then absorb". The study of the optimal application conditions of different control measures provides an important basis for the regulation and disaster reduction of rock burst.
高能量岩石变质调节能量演化“全过程、阶段性”响应规律的差异
针对区域岩爆防治减灾的技术问题,设计了含水率、钻孔直径、钻孔充填材料3种变量的室内对比试验。本研究分析了不同调节方法影响下岩石能量演化全过程的特征,揭示了不同调节方法在减小冲击机理方面的差异及适用条件。结果表明,不同的控制方法可以有效地改变目标物体的力学参数。冲击岩石的能量演化具有明显的阶段差异。通过构建能量转换效率模型,进一步阐述了“先释放后减弱”的注水软化机制、“先引导后释放”的钻井泄压机制和“先释放后吸收”的充填强化调节机制。研究不同防治措施的最优适用条件,为岩爆治理和减灾提供了重要依据。
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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