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Solution for counter-current imbibition of 1D immiscible two-phase flow in tight oil reservoir

机译:致密油藏中一维不混溶两相流逆流吸收的解决方案

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Spontaneous imbibition is an important mechanism for fractured reservoir to enhance oil recovery. Wetting phase enters porous media with the force of capillary pressure and gravity and replaces oil in matrix. To investigate the imbibition of tight reservoirs, on the consideration of tight formation characteristics, this paper derived a one dimension, two phases, counter-current imbibition model, after dimensionless of distance and time, Galerkin method for spatial discretization and time integration, solutions were given, comparisons of conventional sandstone and tight formation were made. The results have indicated that: (1) Imbibition can be divided into gravity assisting, gravity opposing and zero gravity in terms of different gravity conditions. (2) Saturation front of tight formation moves faster than sandstone because of high capillary pressure. (3) Capillary pressure plays the dominant role than gravity in imbibition. Influence of gravity is much greater in high-permeability sandstone than in tight reservoirs. (4) Horizontal well multi-stage fracturing and massive fracturing can increase fracture area and fracture volume, and increase the contact area with wetting phases, this will result in a greater imbibition and a great recovery of oil.
机译:自吸是裂缝性油藏提高采油率的重要机制。润湿相在毛细压力和重力的作用下进入多孔介质,并取代基质中的油。为了研究致密油藏的吸水性,在考虑致密地层特征的基础上,推导了一维,两相,逆流吸水模型。给出了常规砂岩和致密地层的比较。结果表明:(1)根据不同的重力条件,可分为重力辅助,反重力和零重力。 (2)由于毛细压力高,致密地层的饱和锋比砂岩移动得快。 (3)在吸收过程中,毛细血管的压力比重力起主要作用。与致密油藏相比,高渗透率砂岩的重力影响要大得多。 (4)水平井多阶段压裂和大块压裂可以增加裂缝面积和裂缝体积,增加与润湿相的接触面积,这将导致更大的吸收作用和很大的采油量。

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