用长壁围岩三维计算机模拟验证了试验参数

S. Vlasov, Yavhen Moldavanov
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The substantiation of the parameters of the modeling experiment is presented, such as: the choice of the length of the working face, the depth of development of coal seams, the distance of the working face withdrawal from the assembly chamber, the values of the thickness of sandstones that lie in the roof of the coal seams, the choice of values of the distance of occurrence of sandstones above the roof of the coal seam, as well as geometric parameters of the computer model. Based on the justification of the parameters, a plan for conducting experiments was drawn up, the number of which was 225 units. Scientific novelty. As a result of the substantiation of the parameters, an additional combination of new features in existing studies was proposed for the first time, namely, to include in the experiment the presence of coal seams in the top – sandstones with variable thickness, the distance of occurrence above the seam, several standard sizes of the length of the working face were also included, the value of the development depth, the distance of the exit of the working face from the assembly chamber. Changing the above parameters will make it possible to compare the difference in the effect of the results of each experiment separately, depending on the change in each of the parameters, as well as to understand and generalize the idea of ​​the nature and causes of emergency longwall stops associated with the landing of powered support sections “on a hard base”. Practical significance. 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引用次数: 1

摘要

目的。在考虑储层顶部砂岩存在变化的情况下,通过工作面逐级移动来验证矿区计算机建模参数,预测在顿巴斯西部矿区条件下,砂岩对长壁辐合分布性质和工作开挖技术的影响。方法。这项工作对顿巴斯西部煤矿企业固有的地质和技术条件进行了统计分析。并对以往研究的计算机建模实验参数进行比较,在此基础上引入和改变新特征组合,以选择最优的建模参数。结果。建模的参数实验的证据,如:工作面长度的选择,煤层的深度发展,的距离工作面退出装配室,砂岩的厚度的值,躺在煤层的屋顶,选择的值的距离发生砂岩煤层的屋顶之上,以及几何参数的计算机模型。在对参数进行论证的基础上,制定了实验计划,实验数量为225台。科学的新奇。结果实体化的参数,一个额外的新特性的组合在现有的研究中首次提出,即包括在实验中存在煤层与变厚度-砂岩顶部,出现上面缝的距离,几个标准尺寸的工作面长度也包括价值的深度发展,出口的距离的工作面装配室。改变上述参数将有可能分别比较每个实验结果的效果差异,取决于每个参数的变化,以及理解和概括与“在硬基础上”着陆的动力支撑部分相关的紧急长壁停止的性质和原因。现实意义。有根据的建模参数可以最充分地反映岩体中发生的过程,也可以明确参考岩体压力区、卸载区参数,以及长壁内收敛分布变化的性质。通过建模获得的数据可用于选择和证实一种有效的方法来管理工作开挖周围的岩体状态,这将消除“在硬基础上”种植动力支撑段,从而提高顿巴斯西部煤炭开采效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SUBSTANTIATION OF PARAMETERS OF THE EXPERIMENT WITH THREE-DIMENSIONAL COMPUTER MODELING OF THE ROCK MASS AROUND A LONGWALL
Purpose. To substantiate the parameters of computer modeling of the mining area with a step-by-step movement of the working face, as well as taking into account the changing presence of sandstones that lie in the top of the reservoir, to predict the effect of sandstones on the nature of the distribution of convergence in the longwall and the technology of working excavation in the conditions of the mines of Western Donbass. Methods. The work uses a statistical analysis of the geological and technological conditions that are inherent in the coal mining enterprises of the Western Donbass. Also, a comparison was made of the parameters of the experiment of computer modeling of past studies, on the basis of which, a combination of new features was introduced and changed, which is aimed at choosing the optimal modeling parameters. Results. The substantiation of the parameters of the modeling experiment is presented, such as: the choice of the length of the working face, the depth of development of coal seams, the distance of the working face withdrawal from the assembly chamber, the values of the thickness of sandstones that lie in the roof of the coal seams, the choice of values of the distance of occurrence of sandstones above the roof of the coal seam, as well as geometric parameters of the computer model. Based on the justification of the parameters, a plan for conducting experiments was drawn up, the number of which was 225 units. Scientific novelty. As a result of the substantiation of the parameters, an additional combination of new features in existing studies was proposed for the first time, namely, to include in the experiment the presence of coal seams in the top – sandstones with variable thickness, the distance of occurrence above the seam, several standard sizes of the length of the working face were also included, the value of the development depth, the distance of the exit of the working face from the assembly chamber. Changing the above parameters will make it possible to compare the difference in the effect of the results of each experiment separately, depending on the change in each of the parameters, as well as to understand and generalize the idea of ​​the nature and causes of emergency longwall stops associated with the landing of powered support sections “on a hard base”. Practical significance. Substantiated modeling parameters make it possible to most adequately reflect the processes occurring in the rock mass, as well as to clarify the parameters of the reference rock pressure zones, unloading zones, as well as the nature of the change in the distribution of convergence in the longwall. The data obtained as a result of modeling can be used to select and substantiate an effective method for managing the state of the rock mass around the working excavation, which will eliminate the planting of powered support sections “on a hard base”, thereby increasing the efficiency of coal mining in the Western Donbass.
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