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Influence of micro‐pore structure in tight sandstone reservoir on the seepage and water‐drive producing mechanism—a case study from Chang 6 reservoir in Huaqing area of Ordos basin

机译:微孔结构在渗流储层中微孔结构对渗流和水驱的影响 - 鄂尔多斯盆地华庆地区昌6水库案例研究

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摘要

Abstract To study the influence of pore structure on the seepage and water‐drive producing mechanisms, various methods were combined to describe the micro‐pore structure in the Chang 6 tight sandstone reservoir in the Huaqing area, Ordos Basin, China. Nuclear magnetic resonance (NMR) was combined with displacement experiments to determine the distribution of oil and water in pores of different scales before and after water flooding. There are few micro pores in the reservoir. As permeability increases, the distribution of nano pores decreases, while sub‐micro pores increase. Also, sub‐micro pores are the main pathway within the reservoir. There is a negative power function correlation between the minimum starting pressure gradient of the oil (Swc) and maximum throat radius. Also, with a decrease of permeability, smaller pore throats become more abundant and the nonlinear section of the flow velocity‐differential pressure curves increase. There is a large amount of crude oil gathering in the nano pores. As permeability increases, the main sources of movable oil are from the nano pores (kg  1.0 × 10−3 μm2). Displacement efficiency is always the highest in sub‐micro pores.
机译:摘要为了研究孔隙结构对渗流和水驱产生机制的影响,组合各种方法来描述鄂尔多斯盆地华庆地区昌6封砂岩水库微孔结构。结合核磁共振(NMR)与位移实验相结合,以确定水淹水前后不同尺度的毛孔中的油和水的分布。水库中有很少的微孔。随着渗透性的增加,纳米孔的分布减少,而亚微孔增加。而且,亚微孔是储层内的主要途径。在油(SWC)和最大喉部半径的最小起始压力梯度之间存在负功率功能相关性。而且,随着渗透性的降低,较小的孔喉部变得更加丰富,并且流速差压曲线的非线性部分增加。在纳米孔隙中聚集了大量原油。随着渗透性的增加,可移动油的主要来源来自纳米孔(Kg 1.0×10-3μm2)。位移效率始终是亚微孔中最高的。

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