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Raw Gangue Filling Mining under Construction —A Case Study in China 被引量:1

Raw Gangue Filling Mining under Construction —A Case Study in China
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摘要 In order to recover the strip pillar coal resources, reduce the amount of gangue mountain and realize remediation of the goaf environment in the old mining area, the raw gangue filling mining technology was proposed. According to the previous practical experience, the feasibility of the implementation of raw gangue filling mining technology in the coal-pressed area was analyzed. Through the filling gangue compaction test, the deformation under different loading stages was obtained. Further, a reasonable prediction of the deformation beyond the experimental limited loading load was made based on the experimental results. Through the deformation source analysis of the whole process of gangue filling, the key factors for controlling deformation before, during, and after filling were determined. Additionally, the proportion of deformation during different stages was quantified. Considering the protection of surface buildings, mining fullness of the working face and mining technology, the production parameters of 1209 and 1210 filling working faces were preliminarily determined. Through numerical simulation, the rationality of mining scheme was verified. Based on the practice of 1209 working face and the key factors to control the deformation of gangue filling, the mining system and process in 1210 working face were optimized. According to the measured surface rock movement, raw gangue filling mining technology can meet the requirements of surface building protection level. Especially, this paper provides a method to quantitatively calculate the equivalent mining height (EMH) of raw gangue filling and its mining deformation, which has reference significance for old mining areas. In order to recover the strip pillar coal resources, reduce the amount of gangue mountain and realize remediation of the goaf environment in the old mining area, the raw gangue filling mining technology was proposed. According to the previous practical experience, the feasibility of the implementation of raw gangue filling mining technology in the coal-pressed area was analyzed. Through the filling gangue compaction test, the deformation under different loading stages was obtained. Further, a reasonable prediction of the deformation beyond the experimental limited loading load was made based on the experimental results. Through the deformation source analysis of the whole process of gangue filling, the key factors for controlling deformation before, during, and after filling were determined. Additionally, the proportion of deformation during different stages was quantified. Considering the protection of surface buildings, mining fullness of the working face and mining technology, the production parameters of 1209 and 1210 filling working faces were preliminarily determined. Through numerical simulation, the rationality of mining scheme was verified. Based on the practice of 1209 working face and the key factors to control the deformation of gangue filling, the mining system and process in 1210 working face were optimized. According to the measured surface rock movement, raw gangue filling mining technology can meet the requirements of surface building protection level. Especially, this paper provides a method to quantitatively calculate the equivalent mining height (EMH) of raw gangue filling and its mining deformation, which has reference significance for old mining areas.
作者 Daqing Li Changxiang Wang Jinjie Xiao Wei Lu Baoliang Zhang Zongkai Li Xiaozhang Tong Daqing Li;Changxiang Wang;Jinjie Xiao;Wei Lu;Baoliang Zhang;Zongkai Li;Xiaozhang Tong(Huainan Emergency Management Bureau, Huainan, China;College of Safety Science and Engineering, Anhui University of Science and Technology, Huainan, China;Shandong Lineng Liyan Mining Engineering Co., Ltd., Jining, China;College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, China;School of Architecture & Civil Engineering, Liaocheng University, Liaocheng, China;Shandong Energy Linyi Mining Group Co., Ltd., Wanglou Coal Mine, Linyi, China;National Engineering Research Center for Coal Gas Control, Huainan, China)
出处 《Engineering(科研)》 CAS 2023年第3期176-195,共20页 工程(英文)(1947-3931)
关键词 Coal Resource Recovery under Construction Raw Gangue Filling Mining Principle of Space-Time Control Filling System and Process Innovation Coal Resource Recovery under Construction Raw Gangue Filling Mining Principle of Space-Time Control Filling System and Process Innovation
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