热-水-机械耦合效应下煤层钻孔过程中的动态瓦斯排放:理论模型和数值模拟

0 ENERGY & FUELS
Xiuquan Yuan , Wenxin Dong , Jinyang Fan , Peng Liu , Zongze Li , Marion Fourmeau , Jie Chen , Wei Liu
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引用次数: 0

摘要

随着煤炭开采深度的增加,煤与瓦斯突出的潜在风险也在增加,可能造成重大人员伤亡、巨大经济损失和生态环境破坏。考虑到现有煤与瓦斯突出预测方法的局限性,需要新的指标或方法。本研究建立了瓦斯扩散、渗流和流动的全耦合动态钻孔瓦斯排放 THM 模型,并通过实测数据验证了模型的可靠性。将验证后的模型应用于动态钻井瓦斯排放的单因素和多因素影响分析。模拟结果表明:(1) 在钻孔过程中,渗透率的增加主要是由于钻孔造成的煤层破坏和扰动以及 THM 模型的耦合效应,使钻孔周围的孔隙率增加。在压力梯度和温度梯度的作用下,钻孔周围煤层的瓦斯压力和温度呈锥形分布。(2)从单因素分析,煤层参数值(初始瓦斯压力、初始透气性、初始煤温)和钻孔参数值(钻孔半径)的增大对钻孔过程中瓦斯排放有不同程度的促进作用。其中,初始透气性的促进作用最明显,初始煤温的促进作用最弱。(3)四个因素的响应面分析结果表明,初始煤温 C 与井眼半径 D 的交互作用最不显著,初始瓦斯压力 A 与初始渗透率 B 的交互作用最显著。同时,建立的多元回归模型表征了钻孔瓦斯排放量与煤层初始瓦斯压力之间的关系,提出了利用钻孔瓦斯排放量预测煤与瓦斯突出的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic gas emission during coal seam drilling under the thermo-hydro-mechanical coupling effect: A theoretical model and numerical simulations

The potential risk of coal and gas outbursts has increased with the depth of coal mining, posing the threat of heavy casualties, vast economic losses, and harm to the ecological environment. Considering the limitations of existing coal and gas outburst prediction methods, novel indicators or methods are needed. In this study, a fully coupled dynamic drilling gas emission THM model of gas diffusion, seepage, and flow is established, and the reliability of the model was verified by the measured data. The validated model was applied to single-factor and multi-factor impact analysis of dynamic drilling gas emission. The simulation results showed that (1) During the drilling process, the increase in permeability is mainly attributed to the coal seam damage and disturbance caused by the borehole and the coupling effects of the THM model, which increase the porosity around the borehole. Driven by the pressure gradient and temperature gradient, the gas pressure and temperature of the coal seam around the borehole show a conical distribution. (2) In the single-factor analysis, increasing the values of coal seam parameters (initial gas pressure, initial permeability, and initial coal temperature) and drilling parameters (borehole radius) will promote gas emissions in the drilling process to different degrees. The most significant promoting effect is the initial permeability, and the weakest is the initial coal temperature. (3) The response surface analysis results of the four factors show that the interaction between initial coal temperature C and borehole radius D is the least significant, and the interaction between initial gas pressure A and initial permeability B is the most significant. Meanwhile, the established multiple regression model characterizes the relationship between borehole gas emissions and initial coal seam gas pressure, and the idea of using drilling gas emission volume to predict coal and gas outbursts was proposed.

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