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http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18812
Nhan đề: | Numerical Simulation of Surface Subsidence and Backfill Material Movement Induced by Underground Mining |
Tác giả: | Li, Xibing Wang, Dongyi Li, Chongjin Liu, Zhixiang |
Từ khoá: | Zinc Underground mines Sublevel caving Civil engineering Hanging walls Mining engineering Coal mining Backfill Mathematical models Economic models Methods Subsidence Control stability Collapse Mechanics Stress concentration |
Năm xuất bản: | 2019 |
Nhà xuất bản: | Hindawi Limited |
Tóm tắt: | Surface subsidence induced by underground mining is one of the challenging problems in mining engineering, which can destroy ground surface buildings and cause huge economic losses to the mine. In this study, a two-dimensional numerical model, established by the discrete element method code PFC2D, was adopted to investigate the mechanical mechanism of surface subsidence and backfill material movement induced by underground mining in the Hongling lead-zinc mine. In the first simulation case, the ore body was excavated from the ground surface to the mining level 705 m by the sublevel caving mining method, and the stress evolution during the mining process was analyzed to reveal the mechanical mechanism of surface subsidence. In the second and third simulation cases, the mined-out areas above 905 m were backfilled by the noncemented tailings and an insulating pillar was reserved beneath the backfill material, and then the deep ore body was excavated by two different mining methods to study the movement law of the backfill material and rock strata induced by underground mining. The numerical simulation results show that when the sublevel caving mining method is adopted, underground mining can induce toppling failures in the hanging wall and lead to a large collapse pit in the ground surface. After the toppling failures in the hanging wall, the collapsed waste rock in the mined-out area can provide support force for the surrounding rock and restrict the further collapse of the hanging wall. Furthermore, when the cut-and-fill mining method is adopted for the excavation of deep ore body, the insulating pillar can restrict the horizontal displacement of surrounding rock and maintain the stability of the backfill material. The cut-and-fill mining method can efficiently control the surface subsidence and prevent the occurrence of collapse pit in the ground surface and is recommended for the Hongling lead-zinc mine to solve the surface subsidence problem. |
Mô tả: | "Hindawi; Advances in Civil Engineering; Volume 2019, Article ID 2724370, 17 pages; https://doi.org/10.1155/2019/2724370" |
Định danh: | http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18812 |
ISSN: | 1687-8086 1687-8094 (eISSN) |
Bộ sưu tập: | Bài báo_lưu trữ |
Các tập tin trong tài liệu này:
Tập tin | Mô tả | Kích thước | Định dạng | |
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BBKH1409_TCCN_Numerical Simulation of Surface.pdf Giới hạn truy cập | Numerical Simulation of Surface Subsidence and Backfill Material Movement Induced by Underground Mining | 26.89 MB | Adobe PDF | Xem/Tải về Yêu cầu tài liệu |
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