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首页> 外文期刊>Journal of natural gas science and engineering >Numerical simulation on natural gas migration and accumulation in sweet spots of tight reservoir
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Numerical simulation on natural gas migration and accumulation in sweet spots of tight reservoir

机译:紧密水库甜点天然气迁移和积累数值模拟

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Although the exploration and development of tight gas have made great progress, the quantified study on gas migration and accumulation in sweet spots of tight gas reservoir is still limited. In this work, a computer program is developed to conveniently describe the different shape of sweet spots and the fractures in tight reservoir. Then, gas migration and accumulation processes are simulated, and the numerical simulation results are visualized and quantified. Based on the simulation results, the mechanism of gas migration and accumulation in sweet spots is revealed. The results indicate that the migration and accumulation of gas are two relatively independent processes. The gas migration process is determined by the permeability of rocks. The critical condition of gas accumulation in sweet spots is mostly determined by the capillary pressure difference between sweet spots and surrounding rock. The two migration patterns are clearly observed during the numerical simulations. When surrounding rock has seepage capacity for gas, the migration pattern tends to be piston-like displacement; when surrounding rock is impermeable for gas, the gas can only migrate into sweet spots through connected fractures. As a result, the migration pattern for this situation tends to be fingering displacement.
机译:虽然勘探和发展紧缩的气体取得了很大进展,但仍然有限的甜点储层甜点气体迁移和积聚的量化研究。在这项工作中,开发了一种计算机程序,以方便地描述甜点的不同形状和狭小水库中的裂缝。然后,模拟气体迁移和累积过程,数值模拟结果被可视化和量化。基于仿真结果,揭示了甜点中气体迁移和积累的机制。结果表明,气体的迁移和积累是两个相对独立的过程。气体迁移过程由岩石的渗透率决定。甜点中气体积聚的临界条件主要由甜点和周围岩石之间的毛细管压力差异决定。在数值模拟期间清楚地观察到两个迁移模式。当周围的岩石具有气体渗漏能力时,迁移图案往往是活塞状的位移;当周围的岩石对于气体不透气时,气体只能通过连接的骨折迁移到甜点中。结果,这种情况的迁移模式往往是指置位移。

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