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http://dx.doi.org/10.12989/gae.2019.18.4.417

Deformation process and prediction of filling gangue: A case study in China  

Wang, Changxiang (College of Mining and Safety Engineering, Shandong University of Science and Technology)
Lu, Yao (College of Mining and Safety Engineering, Shandong University of Science and Technology)
Li, Yangyang (College of Mining and Safety Engineering, Shandong University of Science and Technology)
Zhang, Buchu (College of Mining and Safety Engineering, Shandong University of Science and Technology)
Liang, Yanbo (College of Mining and Safety Engineering, Shandong University of Science and Technology)
Publication Information
Geomechanics and Engineering / v.18, no.4, 2019 , pp. 417-426 More about this Journal
Abstract
Gangue filling in the goaf is an effective measure to control the surface subsidence. However, due to the obvious deformation of gangue compression, the filling effect deserves to be further studied. To this end, the deformation of coal gangue filling in the goaf is analyzed by theoretical analysis, large-scale crushed rock compression test, and field investigation. Through the compression test of crushed rock, the deformation behaviour characteristics and energy dissipation characteristics is obtained and analysed. The influencing factors of gangue filling and predicted amount of main deformation are summarized. Besides, the predicted equation and filling subsidence coefficients of gangue are obtained. The gangue filling effect was monitored by the movement observation of surface rock. Gangue filling can support the roof of the goaf, effectively control the surface subsidence with little influence on the ground villages. The premeter and equations of the main deformation in the gangue filling are verified, and the subsidence coefficient is further reduced by adding cemented material or fine sand. This paper provides a practical and theoretical reference for further development of gangue filling.
Keywords
gangue filling; large-scale crushed rock compression test; deformation behaviour characteristics; energy dissipation characteristics; movement observation of surface;
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Times Cited By KSCI : 6  (Citation Analysis)
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