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Feasibility determination method for upward mining of pillar residual mining area in static disturbance loading

A judgment method and technology of residual mining area, which is applied in surface mining, earthwork drilling, underground mining, etc., can solve problems such as staying in the qualitative experience level, lack of consideration, instability, etc., to extend the service life and avoid judgment errors , the effect of improving the accuracy

Active Publication Date: 2018-10-16
TAIYUAN UNIV OF TECH
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Problems solved by technology

[0004] (1) The above method is not suitable for the determination of upward mining in the residual mining area of ​​the cutter column, and only stays at the qualitative experience level, which cannot meet the requirements of production practice;
[0005] (2) The existing methods for judging the feasibility of upward mining in the residual mining area of ​​the knife column do not study the stability of the remaining coal pillars and interlayer rock formations in the residual mining area of ​​the knife column as a system, and do not give a quantitative determination formula for stability;
[0006] (3) The existing judgment method does not consider the effect of the disturbance load generated during the mining of the upper remaining coal seam on the remaining coal pillar and interlayer rock formation system in the residual mining area of ​​the knife column, and the disturbance load is to cause the instability of the coal pillar and interlayer rock formation system one of the important factors
[0007] In addition, in the existing mines, the roof of the remaining coal seam in the upper part of the residual mining area has the characteristics of loose, broken and unstable rock formations. When the remaining coal seam is mined, the roof falls with the mining and is re-compacted to almost restore to the original rock stress. However, in some residual mining areas, the roof strata of the remaining coal seams are mainly medium-hard and hard rock formations, and the roofs are not easy to fall when the residual coal seams are mined. Different residual mining areas have different characteristics, and the difficulty of mining cannot be generalized; The relationship between the width of the disturbance load on the upper layer and the suspended span of the interlayer rock between the two layers of coal also affects the safety of coal mining.

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  • Feasibility determination method for upward mining of pillar residual mining area in static disturbance loading

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[0032] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are part of the embodiments of the present invention, rather than All the embodiments; based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without creative work all belong to the protection scope of the present invention.

[0033] Such as figure 1 As shown, it is the distribution pattern diagram of the residual mining area of ​​the knife column and the remaining coal seam, where A indicates the coal pillar left in the residual mining area of ​​the knife column; B indicates the goaf area of ​​the knife column; C indicates the remaining coal seam; D indicates the interlayer rock formation; E Indicates the overlying strata and topsoil ove...

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Abstract

The present invention discloses a feasibility determination method for upward mining of a pillar residual mining area in a static disturbance loading, and belongs to the technical field of coal mining. The feasibility determination method comprises the following steps of: firstly ascertaining the distribution locations of the pillar residual mining area and the residual coal seam, obtaining the composition, the structure, and physical and mechanical parameters of an interlayer rock stratum, and uniformly dividing and numbering the interlayer rock stratum from bottom to top; then determining the location of a control rock stratum, respectively calculating the magnitude of the disturbance load acting on the residual coal pillars and the control rock layer in the pillar residual mining area of a bearing pressure after propagation attenuation; and finally analyzing the stability of the residual coal pillars and the control rock layer in the pillar residual mining area in consideration of the effects of the static disturbance loading, figuring out the result of the feasibility determination for upward mining of pillar residual mining area. According to the feasibility determination method for upward mining of the pillar residual mining area in the static disturbance loading, the situation that errors of an empirical method are large is avoided, a theoretical basis for safety upwardmining of the residual coal in the pillar residual mining area is provided, the recovery rate of the upper coal resource in the pillar residual mining area is improved, and the service life of a mineis effectively increased.

Description

technical field [0001] The invention belongs to the technical field of coal mining, and in particular relates to a method for judging the feasibility of upward mining in a residual mining area of ​​a cutter post with static disturbance loading. Background technique [0002] With the increase of coal mining intensity, coal resources with better mining conditions in many mining areas are gradually decreasing. The remaining coal seam in the upper part of the residual mining area has considerable reserves and good mining value, and the problem of its safe mining has become increasingly prominent. [0003] The existing identification methods for upward mining in residual mining areas mainly refer to the identification methods of caving upward sequential mining, namely the ratio identification method, the "three-zone" identification method and the surrounding rock balance method. These judgment methods are basically based on layer spacing and mining thickness, and the main proble...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50E21C41/18
CPCE21C41/18G06F30/20G06F2119/06
Inventor 冯国瑞张玉江杨文博闫勇敢白锦文杜云楼牛利凯王胜伟康立勋
Owner TAIYUAN UNIV OF TECH
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