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RSS FeedsEnergies, Vol. 10, Pages 734: Analysis of Development Pattern of a Water-Flowing Fissure Zone in Shortwall Block Mining (Energies)

 
 

20 may 2017 13:46:06

 
Energies, Vol. 10, Pages 734: Analysis of Development Pattern of a Water-Flowing Fissure Zone in Shortwall Block Mining (Energies)
 


In order to effectively recover the residual coal resources, such as coal pillars and irregular coal blocks induced by large-scale extensive mining, in this study, we proposed a shortwall block mining (SBM) technology and examined the development pattern of the water-flowing fissure zone (WFZ) in the overlying strata during the SBM process. By analyzing the overlying rocks` movement rules in SBM, the main controlling factors affecting the development of the height of the water-flowing fissure zone (HWFZ) determined are as follows: mining height, block length, and the width of the protective coal pillar among the blocks. Moreover, based on the elastic foundation beam theory, the mechanical model for the calculation of HWFZ in SBM was established. Based on the first strength theory, the calculation formula of the development HWFZ was derived. Using this model, the calculated HWFZ after SBM was 50.3 m, whereas the measured heights of the leakage of drilling washing fluid were 47.98 and 50.06 m, respectively. The calculated values almost fit well with the field-measured data, verifying the reliability of the proposed mechanical model. The results of this study can provide a significant reference for enhancing the recovery ratio of coal resources and optimizing water protection mining theory.


 
108 viewsCategory: Biophysics, Biotechnology, Physics
 
Energies, Vol. 10, Pages 732: Fast Calculation Model and Theoretical Analysis of Rotor Unbalanced Magnetic Pull for Inter-Turn Short Circuit of Field Windings of Non-Salient Pole Generators (Energies)
Energies, Vol. 10, Pages 730: A New Methodology for Building-Up a Robust Model for Heliostat Field Flux Characterization (Energies)
 
 
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