2021
DOI: 10.1155/2021/6686981
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Similar Physical Modeling of Roof Stress and Subsidence in Room and Pillar Mining of a Gently Inclined Medium‐Thick Phosphate Rock

Abstract: Gently inclined medium-thick orebodies are generally recognized as the most difficult type of orebody to mine, using current available strategies (i.e., the room and pillar method). In the present study, a similar physical model was used to investigate the roof stress and subsidence for mining gently inclined medium-thick phosphate rock from the Jinning Phosphate Mine, Yunnan Province, China. The stress field, displacement field, and roof failure evolution characteristics of the surrounding rock with stope str… Show more

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Cited by 22 publications
(9 citation statements)
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“…The stability calculation and support design of the perilous rock mass do not consider the seismic action [27]. The stability calculation of the perilous rock mass in the working area during an earthquake mainly adopts the following two working conditions, and considers the reduction in the shear strength index of the rock mass structural plane under rainstorm conditions: Condition 1: dead weight + cleft water pressure (water filling height is calculated according to 1/3 fracture height).…”
Section: Stability Calculation and Evaluationmentioning
confidence: 99%
“…The stability calculation and support design of the perilous rock mass do not consider the seismic action [27]. The stability calculation of the perilous rock mass in the working area during an earthquake mainly adopts the following two working conditions, and considers the reduction in the shear strength index of the rock mass structural plane under rainstorm conditions: Condition 1: dead weight + cleft water pressure (water filling height is calculated according to 1/3 fracture height).…”
Section: Stability Calculation and Evaluationmentioning
confidence: 99%
“…According to a certain ratio, water was added to fully mix into an appropriate concentration of paste, which was sent into the mine through the pipeline. After solidification, it can be used as an artificial pillar to bear the ground stress in the stope; therefore, its mechanical stability was crucial to the safety of the stope (Zhang et al, 2011a;Zhang et al, 2011b;Lin et al, 2013;Hong et al, 2021;Li et al, 2021b;Li et al, 2021c). In addition, the backfill is a porous medium, and the permeation characteristic is also an important quality index of the backfill (Wang et al, 2009).…”
Section: Introductionmentioning
confidence: 99%
“…The long-term stability of high and steep rock slopes under complex geological and external disturbance environments has become a major problem for large-scale mines to convert from open-pit to underground mining. In China, the geological structure of Jiangxi Province is complex, and the long-term strong tectonic movement has fully developed the primary faults, joints, and fractures in the rock mass (Pu et al, 2019;Ji et al, 2020;Shuai, 2021;Liu et al, 2020a;Song et al, 2020;Du et al, 2021;Li et al, 2021a, Li et al, 2021b. Affected by open blasting, mechanical excavation, and weathering, a large number of secondary fissures have been generated inside the high-steep rock slope, which further aggravates the fracture and instability of the rock mass.…”
Section: Introductionmentioning
confidence: 99%
“…Affected by open blasting, mechanical excavation, and weathering, a large number of secondary fissures have been generated inside the high-steep rock slope, which further aggravates the fracture and instability of the rock mass. In this area, the geological disasters induced by heavy rainfall are becoming more and more serious (Bai and Elsworth, 2020;Rutqvist and Stephansson, 2003;Lee and Cho, 2002;Li L. K et al, 2021;Li et al, 2019;Li et al, 2021a;Li et al, 2021b;Li et al, 2021c;Song et al, 2021;Zhong et al, 2021). The mine slope rock mass has undergone the two-stage compound mining unloading effect after open-pit and underground mining.…”
Section: Introductionmentioning
confidence: 99%