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| Research on parameter optimization of roof cutting retaining roadway with hard roof and asymmetric support technology of surrounding rock |
| Yuan Shuhao1, Lv Xiaolei2, Xu Bo3, Zhao Songtao4 |
1. College of Energy and Mining Engineering, Shandong University of Science and Technology, Qingdao 266590, China;
2. State Grid Energy Hami Coal and Electricity Co., Ltd., Dananhu No.1 Mine, Hami 839000, China; 3. Etuokeqianqi Great Wall No.6 Mining Co., Ltd., Otog Front Banner 016200, China; 4. Shandong Mining Machinery Group Co., Ltd., Weifang 261000, China |
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Abstract The problems of strong dynamic pressure and asymmetric large deformation control faced by gob-side entry retaining under hard roof were studied. The optimization of roof cutting and pressure relief parameters was conducted by combining theoretical analysis, numerical simulation and field tests. The optimal parameter combination with a roof cutting height of 15 m and a roof cutting angle of 15° was determined. Two evaluation indicators, namely height pressure relief efficiency (ηH) and angle pressure relief efficiency (ηω), were established, and the critical thresholds for parameter optimization were quantitatively identified. Sensitivity analysis was performed, and it was revealed that the roof cutting height was the dominant factor controlling the stress redistribution of surrounding rock after roof cutting. The rotation path of rock blocks was optimized by the roof cutting angle, and the stability of surrounding rock was finely adjusted accordingly. A collaborative support system was proposed according to characteristics of asymmetric stress field formed after roof cutting. Theoretical basis engineering demonstration were provided for gob-side entry retaining under similar geological conditions.
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