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Featured researches published by Xiangfeng Lv.


Advances in Civil Engineering | 2018

Characteristics of Stress Transfer and Progressive Fracture in Overlying Strata due to Mining-Induced Disturbances

Xiangfeng Lv; Hongyuan Zhou; Aiwen Wang; Chun Feng; Xiaochun Xiao

In this study, based on the mining of the 13210 working face in the Yima coal mine of the Gengcun village, China, a simplified mechanical model for the analysis of dynamic destabilization of the overlying strata during underground mining was constructed. The numerical simulation was used to analyze the stress patterns in the advanced abutments of the tunnel face and the characteristics of dynamic failures in the overlying strata. Furthermore, similitude experiments were conducted to study the process of stress release and deformation in the overlying strata, and to analyze the effects of overburden destabilization on the ground surface settlement. The theoretical analysis indicated that if the geometric parameters of a working face are fully determined, a stiffness ratio no greater than 1 is required for dynamic destabilization to occur. The numerical simulation results show that the stress in the overlying strata decreases with a decrease in distance from the tunnel face. The stresses in the advanced abutments initially increase with an increase in distance from the tunnel face, followed by a decrease in stress, and an eventual stabilization of the stress levels; this corresponds to the existence of a “stress build-up zone,” “stress reduction zone,” and “native rock stress zone.” In similitude experiments, it was observed that a “pseudoplastic beam” state arises after the local stresses of the overlying strata have been completely released, and the “trapezoidal” fractures begin to form at stress concentrations. If the excavation of the working face continues to progress, the area of collapse expands upward, thereby increasing the areas of the fracture and densification zones. Owing to the nonuniform settlement of the overlying strata and the continuous development of bed-separating cracks, secondary fractures will be generated on both sides of the working face, which increase the severity of the ground surface settlement.


Archive | 2012

Monitoring apparatus for charge during gas or water-contained coal rock triaxial compression and fracture process

Yishan Pan; Xiaochun Xiao; Zhonghua Li; Xiangfeng Lv; Yangfeng Zhao


Engineering Analysis With Boundary Elements | 2014

Seepage-damage coupling study of the stability of water-filled dump slope

Xiangfeng Lv; Zhenwei Wang; Jianguo Wang


Archive | 2012

Charge monitoring device of triaxial compression rupture containing gas or coal-water rock

Yishan Pan; Xiaochun Xiao; Zhonghua Li; Xiangfeng Lv; Yangfeng Zhao


Archive | 2011

Demising buffering and power-absorbing single hydraulic bracket device

Yishan Pan; Xiangfeng Lv; Zhonghua Li; Aiwen Wang; Guozhen Li; Haipeng Yan


Archive | 2011

Impact abdicating, energy absorbing and supporting device for coal rock laneway

Yishan Pan; Xiangfeng Lv; Zhonghua Li; Aiwen Wang; Haipeng Yan; Guozhen Li


Archive | 2012

Ultrasonic excitation coal mass strong solution and permeation increase experimental apparatus

Xiaochun Xiao; Yishan Pan; Xiangfeng Lv


Archive | 2011

Fast wave absorption and energy dissipation buffering device for mines

Yishan Pan; Yonghui Xiao; Guozhen Li; Xiangfeng Lv; Zhonghua Li; Aiwen Wang


International Journal of Rock Mechanics and Mining Sciences | 2013

Barrier formation of micro-crack interface and piezoelectric effect in coal and rock masses

Xiangfeng Lv; Yishan Pan; Xiaochun Xiao; Aiwen Wang


Archive | 2011

Fully mechanized mining hydraulic support device capable of abdicating and buffering

Yishan Pan; Xiangfeng Lv; Zhonghua Li; Aiwen Wang; Haipeng Yan; Guozhen Li

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Yishan Pan

Liaoning Technical University

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Zhonghua Li

Liaoning Technical University

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Aiwen Wang

Liaoning Technical University

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Xiaochun Xiao

Liaoning Technical University

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Guozhen Li

Liaoning Technical University

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Chun Feng

Chinese Academy of Sciences

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Zhenwei Wang

Chinese Academy of Sciences

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