Methodical principles of experimental-analytical research into the influence of pre-drilled wells on the intensity of gas-dynamic phenomena manifestations

IF 2.8 Q2 MINING & MINERAL PROCESSING
Volodymyr Bondarenko, Iryna Kovalevska, Vyacheslav Krasnyk, Volodymyr Chernyak, O. Haidai, R. Sachko, Ivan Vivcharenko
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Abstract

Purpose.The research aims to substantiate the general provisions on coordination of the experimental-analytical research results of the influence of pre-drilled wells on the intensity of gas-dynamic phenomena manifestations (using the example of the mining-geological conditions of the phenomena at the PJSC Mine Administration Pokrovske, Ukraine). Methods. The research uses an integrated methodology consisting of indirect experimental methods for studying the adjacent rock mass state and tendencies. Findings. It has been proven that indirect experimental indicators of the rock mass state around the tunneling face are related to the peculiarities of the distribution of its stress-strain state components. Based on this research, the well lengths of up to 10-15 m has been determined to effectively and safely de-stress the rock mass. The experimental research validity is confirmed by conducted computational experiments, in the course of which the dependence of the propagation parameters of the stress-strain state component concentrations on the degree of hardness of the lithotypes is revealed, and a geomechanical substantiation to the tendencies of propagation of rock pressure anomalies near stoping and tunneling faces is given. The new knowledge obtained is the basis for creating a method for calculating rational parameters for the location of de-stressing pre-drilled wells. Originality. An objective assessment of the degree of adequacy and reliability of the computational experiment results has been made under the condition of using a new geomechanical model with mine studies of seismic-acoustic signal parameters and the initial gas release velocity. The main tendencies of vertical σу, horizontal σх and σz, as well as stress intensity propagation have been identified. The obtained results of exploring the bottom-hole mass are aimed at substantiating the parameters of anti-outburst measures for all preparatory mine workings. Practical implications. The conducted research is implemented in creation of a calculation method and recommendations for the selection of rational parameters for the location of de-stressing pre-drilled wells for the purpose of weakening the rock mass, surrounding the tunneling face, and reducing the probability of gas-dynamic phenomena occurrence due to the controlled weakening of adjacent rocks.
预钻井对气体动力现象表现强度影响的实验分析研究方法原则
目的:本研究旨在证实关于协调预钻井对瓦斯动力现象表现强度影响的实验-分析研究结果的一般规定(以乌克兰波克罗夫斯克矿务局采矿地质条件为例)。方法。研究采用综合方法,包括研究邻近岩体状态和趋势的间接实验方法。研究结果。事实证明,掘进工作面周围岩体状态的间接实验指标与其应力应变状态成分分布的特殊性有关。在此研究基础上,确定了最长 10-15 米的井长,以有效、安全地消除岩体应力。实验研究的有效性得到了计算实验的证实,在计算实验过程中,揭示了应力应变状态分量集中的传播参数与岩性硬度的关系,并从地质力学角度证实了止水面和掘进面附近岩石压力异常的传播趋势。所获得的新知识是建立计算预钻井去应力位置合理参数方法的基础。独创性。在使用新的地质力学模型的条件下,通过对地震-声学信号参数和初始气体释放速度的矿井研究,对计算实验结果的充分性和可靠性进行了客观评估。确定了垂直σу、水平σх和σz以及应力强度传播的主要趋势。所获得的井底岩体勘探结果旨在为所有预备采矿工作面的防突措施参数提供依据。实际意义。所进行的研究旨在创建一种计算方法和建议,用于选择预钻井去应力位置的合理参数,目的是削弱掘进工作面周围的岩体,并降低由于邻近岩石受控削弱而发生瓦斯动力现象的概率。
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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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