Time effect of borehole pressure relief based on distributed optical fiber sensing technology

被引:0
|
作者
机构
[1] Li, Yunpeng
[2] Zhang, Hongwei
[3] Han, Jun
[4] Zhu, Feng
[5] Guo, Chao
来源
Zhang, Hongwei (kyzhw@263.net) | 1600年 / China Coal Society卷 / 42期
关键词
Infill drilling - Optical fibers - Coal mines - Seismology - Boreholes - Coal - Pressure effects;
D O I
10.13225/j.cnki.jccs.2017.0518
中图分类号
学科分类号
摘要
Based on the principle of borehole pressure relief and distributed optical fiber sensing technology, the internal strain sensing model of coal around the pressure relief boreholes was established.Also, the paper proposed a method of evaluating the pressure relief effect with the optical fiber tensile strain value and the radius of yielded zone.Boreholes are drilled under the sensing cable, and the internal strain of the surrounding coal can be tested periodically.Combined with internal phenomena observation, the borehole pressure relief process can be divided into four stages, according to the characteristics of internal strain and apparent failure of coal in different times.The four stages are respectively fissure development stage, limit equilibrium stage, collapse hole stage, and broken coal compaction stage.The method was used to determine the time interval of each stage in the process of borehole pressure relief under the geological conditions of Xinzhouyao Coal Mine, and concluded that the pressure relief effect of construction drilling above 94 to 101 m was more significant.The distribution characteristics of micro-seismic events before and after the construction time adjustment of pressure relief boreholes were analyzed by micro-seismic monitoring system.The results show that the frequency of high-energy events around the No.8939 panel is significantly reduced, and the average energy of the micro-seismic event is significantly reduced by 38%. © 2017, Editorial Office of Journal of China Coal Society. All right reserved.
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