Modelling of Fragile Coal Mine Roof and Estimation of Rock Loads—Some Empirical and Numerical Methods - Mining, Metallurgy & Exploration (2023)
- Organization:
- Society for Mining, Metallurgy & Exploration
- Pages:
- 19
- File Size:
- 4162 KB
- Publication Date:
- Sep 1, 2023
Abstract
Weak, layered, and fragile rock mass formation, if not supported properly, is subject to roof failure thereby affecting safety
and productivity in underground coal mines. Though Central Mining Research Institute – Indian School of Mines Rock Mass
Rating (CMRI-ISM RMR) based well-defined support design guidelines are established, still occurrence of roof failures in
underground coal mines is a real matter of concern for mining engineers and researchers. Numerical modeling techniques
are successfully used by several researchers by simulating rock mass condition for stability assessment of mine openings.
The analysis becomes crucial in case of weak and fragile rock formation. The present research envelops the determination of
31 cases of rock load by CMRI-ISM RMR under different geo-mining conditions followed by the development of modified
Rock Mass Rating (RMR), i.e., rock mass rating dynamic (
RMRdyn) by incorporating P-wave velocity as a new parameter.
The rock load determined using RMRdyn
and numerical models was correlated and found in close agreement. In addition,
the deviation in rock load determined by all the three approaches, i.e., CMRI-ISM RMR, numerical modeling, and RMRdyn,
was compared with the actual field data. The percentage deviation obtained in RMRdyn
and numerical modeling is less
compared to CMRI-ISM RMR.
Citation
APA: (2023) Modelling of Fragile Coal Mine Roof and Estimation of Rock Loads—Some Empirical and Numerical Methods - Mining, Metallurgy & Exploration (2023)
MLA: Modelling of Fragile Coal Mine Roof and Estimation of Rock Loads—Some Empirical and Numerical Methods - Mining, Metallurgy & Exploration (2023). Society for Mining, Metallurgy & Exploration, 2023.