Stability of coal pillar in gob-side entry driving under unstable overlying strata and its coupling support control technique

被引:0
|
作者
Yuan Zhang [1 ]
Zhijun Wan [1 ]
Fuchen Li [2 ]
Changbing Zhou [1 ]
Bo Zhang [1 ]
Feng Guo [1 ]
Chengtan Zhu [1 ]
机构
[1] School of Mines, Key Laboratory of Deep Coal Resource Mining, Ministry of Education, China University of Mining & Technology
[2] Baodian Coal Mine, Yanzhou Coal Mining Company Limited
基金
国家高技术研究发展计划(863计划);
关键词
Gob-side entry driving Unstable surrounding rock Coal pillar stability Surrounding rock control Coupling support;
D O I
暂无
中图分类号
TD353 [巷道支护];
学科分类号
0819 ;
摘要
Considering the situation that it is difficult to control the stability of narrow coal pillar in gob-side entry driving under unstable overlying strata, the finite difference numerical simulation method was adopted to analyze the inner stress distribution and its evolution regularity, as well as the deformation characteristics of narrow coal pillar in gob-side entry driving, in the whole process from entry driving of last working face to the present working face mining. A new method of narrow coal pillar control based on the triune coupling support technique (TCST), which includes that high-strength prestressed thread steel bolt is used to strain the coal on the goaf side, and that short bolt to control the integrity of global displacement zone in coal pillar on the entry side, and that long grouting cable to fix anchor point to constrain the bed separation between global displacement zone and fixed zone, is thereby generated and applied to the field production. The result indicates that after entry excavating along the gob under unstable overlying strata, the supporting structure left on the gob side of narrow coal pillar is basically invalid to maintain the coal-pillar stability, and the large deformation of the pillar on the gob side is evident. Except for the significant dynamic pressure appearing in the coal mining of last working face and overlying strata stabilizing process, the stress variation inside the coal pillar in other stages are rather steady, however, the stress expansion is obvious and the coal pillar continues to deform. Once the gob-side entry driving is completed, a global displacement zone on the entry side appears in the shallow part of the pillar, whereas, a relatively steady fixed zone staying almost still in gob-side entry driving and present working face mining is found in the deep part of the pillar. The application of TCST can not only avoid the failure of pillar supporting structure, but exert the supporting capacity of the bolting structure left in the pillar of last sublevel entry, thus to jointly maintain the stability of coal pillar.
引用
收藏
页码:204 / 210
页数:7
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