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Numerical simulation of gas flow in artificial fracture coal by three-dimensional reconstruction based on computed tomography

机译:基于计算机断层扫描的三维重建数值模拟人工压裂煤的瓦斯流动

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摘要

The influences of spatial geometric shape and position of a fracture on gas seepage were analyzed to explore the law of gas flow in the fracture structure of coals. First, artificial fracture surfaces with different shapes were preset in the computed tomography (CT) image. A coal reconstruction model with a single artificial fracture with different shapes and angles was established by translating the artificial fracture plane using three-dimensional reconstruction technology. Finally, the internal gas seepage law was analyzed together with the finite element method. The simulation on the same spatial shape of the fracture structure demonstrated that the seepage velocity at the coal section did not show evident variation law with the angle. Based on further extraction of the penetration velocity on the artificial fracture section, the penetration velocity increased with the expansion of the fracture angle under the same fracture shape. The penetration velocity on different shapes of the fracture surface increased with the fracture edges (from square to circular) under the same angle. (C) 2016 Elsevier B.V. All rights reserved.
机译:分析了裂缝的空间几何形状和位置对气体渗流的影响,探讨了煤在裂缝结构中的气体流动规律。首先,在计算机断层扫描(CT)图像中预设具有不同形状的人工骨折表面。通过利用三维重建技术平移人工裂缝平面,建立了具有不同形状和不同角度的单一人工裂缝的煤炭重建模型。最后,结合有限元方法对内部气体渗流规律进行了分析。在相同的裂缝结构空间形状上的模拟表明,煤段的渗透速度没有显示出明显的随角度变化的规律。在进一步提取人造裂缝段的穿透速度的基础上,在相同裂缝形状下,穿透速度随着裂缝角的扩大而增加。在相同角度下,不同形状的裂缝表面的穿透速度随着裂缝边缘(从正方形到圆形)的增加而增加。 (C)2016 Elsevier B.V.保留所有权利。

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