Energy dissimilation characteristics and shock mechanism of coal-rock mass induced in steeply-inclined mining: comparison based on physical simulation and numerical calculation

Author:

Xu HuicongORCID,Lai Xingping,Shan Pengfei,Yang Yanbin,Zhang Shuai,Yan Baoxu,Zhang Yun,Zhang Nan

Funder

the basic research program of Natural Science in Shaanxi Province

National Natural Science Foundation of China

the Key Research and Development Program of Shaanxi Province

Publisher

Springer Science and Business Media LLC

Subject

Earth and Planetary Sciences (miscellaneous),Geotechnical Engineering and Engineering Geology

Reference30 articles.

1. Cai W, Dou LM, Si GY, Cao AY, Gong SY, Wang GF, Yuan SS (2019) A new seismic-based strain energy methodology for coal burst forecasting in underground coal mines. Int J Min Sci Technol 123:104086

2. Cheng GW, Ma TH, Tang CA, Liu HY, Wang SJ (2017) A zoning model for coal mining - induced strata movement based on microseismic monitoring. Int J Min Sci Technol 94:123–138

3. Cui F, Yang YB, Lai XP, Cao JT (2019) Similar material simulation experimental study on rockbursts induced by key stratum breaking based on microseismic monitoring. Chin J Rock Mech Eng 38(4):803–814 (In Chinese)

4. Deng YH, Wang SQ (2014) Feasibility analysis of gob-side entry retaining on a working face in a steep coal seam. Int J Min Sci Technol 24(4):499–503

5. Dou LM, He J, Cao AY, Gong SY, Cai W (2015) Rock burst prevention methods based on theory of dynamic and static combined load induced in coal mine. J China Coal Soc 40(7):1469–1476 (In Chinese)

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