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Oil production by gravity drainage mechanism

机译:重力排水机制采油

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Gravity drainage is a recovery mechanism for a fractured reservoir that consists of matrix and fractures. The entire process of this gravity drainage is dependent on the density difference between the oil in the matrix and the gas in the fracture thereby providing the pressure difference required for the oil recovery from the matrix block. Several equations to quantify flow through matrix and fracture have been provided by many authors. An analytical model is described to determine the time at whichgas enters into pores to displace oil in the matrix block based on water displacement. Eclipse 100 reservoir simulator is used in the computer simulation to study how oil is produced by gravity drainage mechanism in fractured reservoirs. The simulation is performed on a single block and stack of blocks. The effect of fracture aperture, matrix permeability, capillary continuity between matrix block, and block height on oil recovery is considered. Fracture aperture contributed to recovery only for a single block, and regardless of where the injection well or production well was placed, it did not affect recovery. Recovery rate under gravity drainage was observed to be in the range of 1% to 7%.
机译:重力排水是一种由基质和裂缝组成的裂缝性储层的恢复机制。该重力排水的整个过程取决于基质中的油与裂缝中的气体之间的密度差,从而提供从基质块中采油所需的压力差。许多作者提供了一些方程来量化流经基质和裂缝的流量。描述了一种分析模型,用于基于水驱替来确定气体进入孔隙以驱替基质块中的油的时间。 Eclipse 100油藏模拟器用于计算机模拟中,以研究裂缝性油藏中重力排放机理如何产生石油。模拟是在单个块和块堆栈上执行的。考虑了裂缝孔径,基质渗透率,基质区块之间的毛细管连续性以及区块高度对油采收率的影响。裂缝孔径仅对单个区块有贡献,并且无论注入井或生产井位于何处,都不会影响恢复。观察到重力排水下的回收率在1%至7%的范围内。

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