Substantiating the optimization solutions for the mine working fastening system interaction with the enclosing rock mass

IF 2.8 Q2 MINING & MINERAL PROCESSING
H. Symanovych, I. Salieiev, M. Shyshov, M. Odnovol
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引用次数: 2

Abstract

Purpose. Determination of the rational interaction modes between the fastening system and the extraction working enclosing mass in the zone of stope operations influence. Methods. An algorithm for searching for optimal solutions for the interaction modes between the fastening system and the coal-bearing mass has been substantiated. The deformation-strength characteristics of the fastening system elements have been agreed. The design parameters of the support elements have been optimized according to the criterion of their equal strength. According to the optimal parameters, a methodology for calculating the function that describes the rational deformation-strength characteristic of the fastening system, depending on the mining-geological conditions, has been developed and substantiated. Findings. Computational experiments have been conducted to determine the rock mass deformation-strength characteristic. Based on the normative documents, the sizes of the natural equilibrium arch have been calculated. The adequacy of methodical principles for minimizing the load on the fastening system has been proved. The patterns for the influence of geomechanical factors on the choice of optimal parameters of the fastening system deformation-strength characteristics have been determined. A methodology for calculating the rational parameters of the fastening system and its constituent elements has been obtained. Originality. Combined studies of minimizing the load on the fastening system have been conducted. The patterns for the influence of geomechanical factors on the choice of load-bearing capacity and the yielding property value of the fastening system have been determined. Regression equations have been obtained for calculating the fastening system optimal parameters with a geomechanical index of working conditions. This enables implementation of a unified strategy for resource-saving improvement in fastening systems. Practical implications. A methodology has been developed for obtaining the weakening mass deformation-strength characteristic, depending on the depth of mine working location, the texture of the rocks in the coal-overlaying formation and its strength properties. The applicability of the methodology for the implementation of a unified strategy of resource-saving improvement of the mine working fastening systems for the Western Donbas mines has been proved.
验证了矿山工作紧固系统与围岩相互作用的优化解
目的。确定了采场作业影响区内紧固系统与抽采工作面围体的合理相互作用模式。方法。提出了一种寻找紧固系统与含煤体相互作用模式最优解的算法。对紧固系统元件的变形强度特性进行了分析。根据各支撑单元的等强度准则对各支撑单元的设计参数进行了优化。根据最优参数,建立并验证了一种描述锚固系统随开采地质条件变化的合理变形强度特征函数的计算方法。发现。通过计算试验确定了岩体的变形强度特征。在规范文献的基础上,计算了自然平衡拱的尺寸。已经证明了最小化紧固系统载荷的方法原则的充分性。确定了地质力学因素对紧固系统变形强度特性最优参数选择的影响规律。给出了一种计算紧固系统及其组成元件合理参数的方法。创意。将紧固系统的载荷最小化的组合研究已经进行。确定了地质力学因素对固定系统承载力选择和屈服性能值的影响规律。建立了以工况地质力学指标计算紧固系统最优参数的回归方程。这使得在紧固系统中实施节约资源的统一战略成为可能。实际意义。根据采场深度、覆煤岩层的岩石结构及其强度特性,提出了一种获得弱岩体变形强度特征的方法。已证明该方法适用于执行节约资源的统一战略,改进顿巴斯西部矿井的工作紧固系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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