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拉格朗日插值法在特采工作面采出量计算中的应用 被引量:1
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作者 刘建平 《煤炭工程师》 北大核心 1998年第6期44-45,48,共3页
针对垛式、仓库式、综放等特采工作面的采出量用水分、灰分和含矸改正后的统计产量的不合理性,根据正常开采和特殊开采的工作面之间存在的统计方法和煤层结构、煤层顶底板条件的相似性,提出以正常开采工作面的采出量和统计产量为基础... 针对垛式、仓库式、综放等特采工作面的采出量用水分、灰分和含矸改正后的统计产量的不合理性,根据正常开采和特殊开采的工作面之间存在的统计方法和煤层结构、煤层顶底板条件的相似性,提出以正常开采工作面的采出量和统计产量为基础选择学习样本,运用拉格朗日插值法来计算特采工作面采出量的方法,从而为特采工作面采出量计算提供了一条新方法。 展开更多
关键词 特采工作面 拉格朗日插值 出量
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特采工作面采出量计算法 被引量:3
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作者 刘建平 《矿山测量》 1998年第4期42-45,共4页
针对垛式、仓房式和综放等特采工作面现行采出量计算方法存在的不足,运用统计数学分析法,从正常开采的工作面中选择出样本,建立工作面采出量和统计产量之间的数学关系,采用地质比拟方法,提出了单位统计产量法、回归分析法和拉格朗... 针对垛式、仓房式和综放等特采工作面现行采出量计算方法存在的不足,运用统计数学分析法,从正常开采的工作面中选择出样本,建立工作面采出量和统计产量之间的数学关系,采用地质比拟方法,提出了单位统计产量法、回归分析法和拉格朗日插值法等多种计算方法。 展开更多
关键词 特采工作面 出量 单位统计 产量 回归分析
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Gradient principle of horizontal stress inducing rock burst in coal mine 被引量:6
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作者 何江 窦林名 《Journal of Central South University》 SCIE EI CAS 2012年第10期2926-2932,共7页
Based on the stress distribution characteristics of rock burst multiple sites, the criterion of horizontal stress inducing layer dislocation rock burst was established. Accordingly, the influencing factors were analyz... Based on the stress distribution characteristics of rock burst multiple sites, the criterion of horizontal stress inducing layer dislocation rock burst was established. Accordingly, the influencing factors were analyzed. The analysis results indicate that the stress condition, edge of etastic zone depth, supporting strength, and the friction angle and cohesion among coal stratum, roof and floor are sensitive factors. By introducing double-couple model, the layer dislocation rock burst was explained and the energy radiation characteristics were analyzed. The SOS micro-seismic monitoring system was applied to observe the rock burst hazards about a mining face. The results show that P- and S-wave energy radiations produced by rock burst have directional characteristics. The energy radiation characteristics of the 22 rock bursts occurring on 79Z6 long-wall face are basically the same as theoretical results, that is, the ratio of S-wave energy of sensor 4 to 6 is about 1.5 and that of P-wave is smaller than 0.5. The consistency of the monitored characteristics of the energy radiation theoretically increases with the total energy increasing. 展开更多
关键词 horizontal stress rock burst gradient principle micro-seismic monitoring directional characteristic energy radiation
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Characteristics of compression fracture of "three soft" coal bed by perfusion and gas sucking technique 被引量:4
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作者 WANG Zhi-rong LI Shu-kai WANG Yuan-xiao 《Journal of Coal Science & Engineering(China)》 2011年第1期43-46,共4页
Against the particularity of stratum-structure in "three soft" mine areas, according to rock indoor test and on-site sucking experiment, discussed the characteristics of argillization, compression fracture and sucki... Against the particularity of stratum-structure in "three soft" mine areas, according to rock indoor test and on-site sucking experiment, discussed the characteristics of argillization, compression fracture and sucking technique of soft coal with low permeability. It is clearly pointed out that the gas can be highly effectively sucked only by compression fracture along the occurrence of the coal seam, creating inter-seams crack belt because of the difference of bulgy deformation. After the flooding experiment in the 24080 workface of Pingdingshan No. 10 mine, the average single-bore volume of gas increases from 77 m3 to 7 893 mS, while decay cycle extended from 7 days to 80-90 days. Also, the single-bore extracting rate of gas increases to 33%. 展开更多
关键词 "three soft" coal bed hydraulic fracturing the exploiting and sucking of gas low-carbon economy
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Rock mechanical investigation of strata loading characteristics to assess caving and requirement of support resistance in a mechanized powered support longwall face 被引量:6
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作者 Aveek Mangal P.S.Paul 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1081-1087,共7页
Longwall mining is one of the most acclaimed and widely used in underground method for coal extraction. The interaction of powered supports with the roof is the key issue in strata mechanics of longwall mining. Contro... Longwall mining is one of the most acclaimed and widely used in underground method for coal extraction. The interaction of powered supports with the roof is the key issue in strata mechanics of longwall mining. Controlled caving of rock mass is a prerequisite pro thriving exploitation of coal deposits by longwall retreat with caving technique and support resistance has evolved as the most promising and effective scientific tool to predict various aspects related to strata mechanics of such workings. Load density,height of caving block, distance of fractured zone ahead of the face, overhang of goaf and mechanical strength of the debris above and below the support base have been found to influence the magnitude of load on supports. Designing powered support has been attempted at the different countries in different methods. This paper reviews the mechanism of roof caving and the conventional approaches of caving behaviour and support resistance requirement in the context of major strata control experiences gained worldwide. The theoretical explanation of the mechanism of roof caving is still continuing with consistently improved understanding through growing field experiences in the larger domain of geo-mining conditions and state-of-art strata mechanics analysis and monitoring techniques. 展开更多
关键词 Longwall mining Geo-mechanics Caving behaviour Support resistance
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Movement laws and mechanical characteristics of top coal in blasting face
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作者 SUN Guang-zhong JIANG Zhi-gang 《Journal of Coal Science & Engineering(China)》 2010年第4期352-355,共4页
Measuring the top coal movement and abutment pressure about Teaching ThirdMine that belonged to the National Energy Investment and Development.It shows that thetop coal's strong compression occurs 6 m in front of ... Measuring the top coal movement and abutment pressure about Teaching ThirdMine that belonged to the National Energy Investment and Development.It shows that thetop coal's strong compression occurs 6 m in front of the face, the top coal is in front of sideabutment pressure concentration increase area at this time, and the top coal horizontaldisplacement increase rapidly.Also analyzed the top coal mechanical properties, and thetop coal under abutment pressure turned into block state.Finally, analyzed the top coalfailure mechanism and the structure of the mechanical model, and also made a theoreticalanalysis of the top coal's ultimate bearing capacity. 展开更多
关键词 top coal caving abutment pressure mechanical model ultimate bearing capacity
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