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Numerical simulation of land subsidence and verification of its character for an iron mine using sublevel caving 被引量:10

Numerical simulation of land subsidence and verification of its character for an iron mine using sublevel caving
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摘要 Combined with a digital bored photography system and in-situ statistics concerning the joints and fissures of both ore-body and surrounding rock,a 2D discrete model was constructed using UDEC.The stress field and displacement field changes of different sublevel stoping systems were also studied.Changes in the overlying rock strata settlement pattern has been analyzed and validated by in-situ monitoring data.The results show that:in the caving process,there exists an obvious delay and jump for the overlying rock strata displacement over time,and a stable arch can be formed in the process of caving,which leads to hidden goafs.Disturbed by the mining activity,a stress increase occurred in both the hanging wall and the foot wall,demonstrating a hump-shaped distribution pattern.From the comparison between simulation results and in-situ monitoring results,land subsidence shows a slow-development,suddenfailure,slow-development cycle pattern,which leads eventually to a stable state.This pattern validates the existence of balanced arch and hidden goafs. Combined with a digital bored photography system and in-situ statistics concerning the joints and fissures of both ore-body and surrounding rock,a 2D discrete model was constructed using UDEC.The stress field and displacement field changes of different sublevel stoping systems were also studied.Changes in the overlying rock strata settlement pattern has been analyzed and validated by in-situ monitoring data.The results show that:in the caving process,there exists an obvious delay and jump for the overlying rock strata displacement over time,and a stable arch can be formed in the process of caving,which leads to hidden goafs.Disturbed by the mining activity,a stress increase occurred in both the hanging wall and the foot wall,demonstrating a hump-shaped distribution pattern.From the comparison between simulation results and in-situ monitoring results,land subsidence shows a slow-development,suddenfailure,slow-development cycle pattern,which leads eventually to a stable state.This pattern validates the existence of balanced arch and hidden goafs.
出处 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期327-332,共6页 矿业科学技术学报(英文版)
基金 financially supported by the National Natural Science Foundation of China(No.51374033) the Doctoral Program of Higher Education Research Fund(No.20120006110022) the Chenchao Iron Mine and the technical support of Itasca
关键词 无底柱分段崩落法 数值模拟 地面沉降 数据验证 摄影系统 开采过程 节理裂隙 离散模型 Block caving Joint survey UDEC model Ground settlement Balanced arch Hidden goafs
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