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Fractal characteristics of surface crack evolution in the process of gas-containing coal extrusion 被引量:12
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作者 Chen Peng Wang Enyuan +3 位作者 Ou Jianchun Li Zhonghui Wei Mingyao Li Xuelong 《International Journal of Mining Science and Technology》 SCIE EI 2013年第1期121-126,共6页
In this paper, simulated experiment device of coal and gas outburst was employed to perform the experiment on gas-containing coal extrusion. In the experiment, coal surface cracks were observed with a high-speed camer... In this paper, simulated experiment device of coal and gas outburst was employed to perform the experiment on gas-containing coal extrusion. In the experiment, coal surface cracks were observed with a high-speed camera and then the images were processed by sketch. Based on the above description, the paper studied the fractal dimension values from different positions of coal surface as well as their changing laws with time. The results show that there is a growing parabola trend of crack dimension value in the process of coal extrusion. Accordingly, we drew the conclusion that extruded coal crack evolution is a process of fractal dimension value increase. On the basis of fractal dimension values taken from different parts of coal masses, a fractal dimension of the contour map was drawn. Thus, it is clear that the contour map involves different crack fractal dimension values from different positions. To be specific, where there are complicated force and violent movement in coal mass, there are higher fractal dimension values, i.e., the further the middle of observation surface is from the exit of coal mass, and the lower the fractal dimension value is. In line with fractal geometry and energy theory of coal and gas outburst, this study presents the relation between fractal dimension and energy in the process of extruding. In conclusion, the evolution of crack fractal dimension value can signify that of energy, which has laid a solid foundation for the quantification research on the mechanism of gas-containing coal extrusion. 展开更多
关键词 Coal and gas outburst Fracture Surface crack fractal dimension value Energy
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基于格子Boltzmann法岩体裂隙粗糙特征对渗流的影响
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作者 王继刚 方明松 +1 位作者 陈刚 胡成 《地质科技通报》 CAS CSCD 北大核心 2023年第4期279-287,共9页
裂隙在岩体中的形貌结构复杂,岩体裂隙的粗糙特征对裂隙的渗透性存在较大影响。目前传统的数值模拟软件主要是以等效连续介质为基础的宏观评价,无法模拟裂隙微小结构内的介观渗流特征;虽然存在考虑裂隙粗糙特征的粗糙裂隙渗透评估模型,... 裂隙在岩体中的形貌结构复杂,岩体裂隙的粗糙特征对裂隙的渗透性存在较大影响。目前传统的数值模拟软件主要是以等效连续介质为基础的宏观评价,无法模拟裂隙微小结构内的介观渗流特征;虽然存在考虑裂隙粗糙特征的粗糙裂隙渗透评估模型,但是将粗糙裂隙的剖面高度标准偏差值作为粗糙特征的定量表征缺乏物理意义并且存在局限性。首先运用W-M(Weierstrass-Mandelbrot)函数构建具有不同分形维数的二维粗糙单裂隙数字模型。其次基于格子Boltzmann法理论通过编程实现介观尺度的渗流模拟,并结合以裂隙剖面高度标准偏差值作为粗糙特征定量表征的立方定律公式进行分析。结果表明:以裂隙剖面高度标准偏差值作为粗糙特征定量表征的立方定律公式存在不足;以分形维数作为粗糙特征定量表征的局部修正立方定律公式相对可行。研究对于地下水污染防治以及地下水资源评估有着重要的工程实际意义。 展开更多
关键词 格子Boltzmann法 二维粗糙单裂隙 分形维数 立方定律
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岩体裂隙面数量的三维分形分布仿真理论与技术 被引量:18
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作者 赵阳升 文再明 冯增朝 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2005年第6期994-998,共5页
以岩体裂隙面数量分布具有分形特征为基础,建立了岩体裂隙面数量的三维分形分布仿真模型,并采用 VisualC++6.0 开发出岩体裂隙面数量的三维分形分布仿真系统。利用该仿真系统可方便地研究岩体内部任意剖面的裂隙迹线分布特征以及任何子... 以岩体裂隙面数量分布具有分形特征为基础,建立了岩体裂隙面数量的三维分形分布仿真模型,并采用 VisualC++6.0 开发出岩体裂隙面数量的三维分形分布仿真系统。利用该仿真系统可方便地研究岩体内部任意剖面的裂隙迹线分布特征以及任何子块内裂隙面的分布特征,为岩体工程稳定性及其应力分布分析带来了极大的方便。 展开更多
关键词 岩石力学 裂隙面 三维 分形分布 仿真模型
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