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Model test study on the formation and development of underground erosion ground fissures in the Kenya Rift Valley 被引量:3
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作者 LIU Yang PENG Jian-bing +3 位作者 JIANG Fu-qiang LU Quan-zhong ZHU Feng-ji Xu Qiang 《Journal of Mountain Science》 SCIE CSCD 2022年第4期1037-1050,共14页
The Kenya Rift Valley is relatively prone to underground erosion ground fissures and associated disasters,which gravely hinder local engineering construction and economic development.In this research,we performed fiel... The Kenya Rift Valley is relatively prone to underground erosion ground fissures and associated disasters,which gravely hinder local engineering construction and economic development.In this research,we performed field and experimental studies on ground fissures in the Kenya Rift Valley area,and determined the structural characteristics of underground erosion fissures.Based on a geological survey of the area,we generalized a geological model for typical ground fissures and reproduced the intermediate process of ground fissure propagation using a large-scale physical model test.Further,the development process of underground erosion fissures were categorized into four stages:uniform infiltration,preferential infiltration,cavity expansion,and collapse formation stages.During the development of underground erosion fissures,water content was distributed symmetrically along the fissures,and these fissures acted as the primary infiltration paths of water.When the ground collapsed,the increase in negative pore water pressure was greater,whereas the increase in positive pore water pressure was less in the shallow soil;moreover,in the deep soil,the increase in positive pore water pressure was greater than that of negative pore water pressure.Additionally,the earth pressure increment initially increased and then decreased with the development of erosion.During underground erosion collapse,the water content and pore water pressure appeared to increase and decrease rapidly.These results can be employed to predict the occurrence of underground erosion ground fissures and the resulting soil collapse. 展开更多
关键词 Kenya Rift Valley Model test Seepage failure underground erosion ground fissure
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Analysis of roof and pillar failure associated with weak floor at a limestone mine 被引量:5
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作者 Murphy Michael M. Ellenberger John L. +1 位作者 Esterhuizen Gabriel S. Miller Tim 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第3期471-476,共6页
A limestone mine in Ohio has had instability problems that have led to massive roof falls extending to the surface. This study focuses on the role that weak, moisture-sensitive floor has in the instability issues.Prev... A limestone mine in Ohio has had instability problems that have led to massive roof falls extending to the surface. This study focuses on the role that weak, moisture-sensitive floor has in the instability issues.Previous NIOSH research related to this subject did not include analysis for weak floor or weak bands and recommended that when such issues arise they should be investigated further using a more advanced analysis. Therefore, to further investigate the observed instability occurring on a large scale at the Ohio mine, FLAC3 D numerical models were employed to demonstrate the effect that a weak floor has on roof and pillar stability. This case study will provide important information to limestone mine operators regarding the impact of weak floor causing the potential for roof collapse, pillar failure, and subsequent subsidence of the ground surface. 展开更多
关键词 underground limestone Ground control Case study Weak floor Instability
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3-D rheologic model of earthquake prepa-ration (III): Precursor field
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作者 宋治平 梅世蓉 尹祥础 《Acta Seismologica Sinica(English Edition)》 CSCD 2006年第1期20-29,共10页
On the basis of the theory of viscoelastic displacement and strain field for the three-dimensional rheologic model of earthquake preparation, this paper mainly studies the theoretical solution of precursor field for t... On the basis of the theory of viscoelastic displacement and strain field for the three-dimensional rheologic model of earthquake preparation, this paper mainly studies the theoretical solution of precursor field for the three-dimensional rheologic model of earthquake preparation. We derive the viscoelastic analytical expressions of the ground tilt, underground water level, earth resistivity at an arbitrary point (x, y, z) in the rheologic medium, and analyzed the earth resistivity preliminarily, providing a certain theoretical basis for the precursor analysis of seismogenic process. 展开更多
关键词 elastic inclusion theory rheologic inclusion theory viscoelastic analytical expression ground tilt underground water level earth resistivity
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