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Numerical Simulation of Gas Injection for CBM Openhole Cavity Completion Considering the Coal Vertical Fracture System

机译:考虑煤垂直骨折系统的CBM Openhole腔的注射数值模拟

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A discrete element numerical model simulating the process of gas pressurization in coalbed methane wells is built based on UDEC software. The model considers the unique vertical fracture system of the coal. Simulates the distribution of effective stress, pore pressure and the node displacement vector around the wellbore in the process of pressurization under different terrestrial stress conditions. The analysis shows that, reservoir fluid flow and matrix deformation in the pressurization of cavity completion can be better represented by taking coal's unique fracture system into consideration. Coal reservoir with anisotropic stress is more prone to rupture and collapse than that under isotropic condition. In the vertical fracture system, the discrepancy of the fluid velocity will lead to differences in formation stress gradient and help generate shearing fracture. Tensile fractures' formation and growing trend can be reflected by nodal displacement vector distribution.
机译:基于UDEC软件,构建了模拟煤层气加压过程的分立元素数值模型。该模型考虑了煤的独特垂直骨折系统。在不同陆地应力条件下,在加压过程中模拟井筒周围有效应力,孔隙压力和节点位移载体的分布。分析表明,通过考虑煤炭的独特骨折系统,可以更好地代表腔室完全加压中的储层流体流动和基质变形。具有各向异性应力的煤储层比各向同性条件下的耐受性更容易发生和崩溃。在垂直骨折系统中,流体速度的差异将导致形成应力梯度的差异,有助于产生剪切骨折。拉伸骨折的形成和生长趋势可以通过节点位移载体分布反映。

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