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A Simulation Experimental Study on the Gas-Water Saturation Characteristics in the Process of Constant-Speed Gas Production Based on the Microscopic Model

机译:基于微观模型的恒速产气过程中气水饱和度特征的模拟实验研究

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This paper presents the important findings of research work that was undertaken on the residual water saturation of gas reservoirs that arises from the decrease in pore pressure during a constant-speed gas production process. To study the changes and distribution regularities of water-gas saturation, we used a micro-glass model to conduct a simulation study of the process of constant-speed gas production under pore pressures of 0.5 MPa, 1 MPa and 5 MPa. The results indicate that the total displacement power of the gas reservoir directly affects the development effect. The higher the pore pressures of the gas reservoir whose part of bound water may flow, the more difficult is the development of the reservoir due to the presence of more movable water, resulting in a poorer development effect. For a lower pore pressure of a gas reservoir, the bound water of the gas reservoir is generally immobile, that is, the gas production is single-phase gas seepage, resulting in an improved development effect. Implementing a reasonable development plan for a waterbearing gas reservoir with low permeability is clearly of great significance to ensure its effective development.
机译:本文介绍了在恒速天然气生产过程中由于孔隙压力降低而引起的气藏残余水饱和度方面的研究工作的重要发现。为了研究水气饱和度的变化和分布规律,我们使用微玻璃模型对孔隙压力为0.5 MPa,1 MPa和5 MPa的恒速产气过程进行了模拟研究。结果表明,气藏的总驱力直接影响开发效果。一部分结合水可能流过的储气库的孔隙压力越高,由于存在更多的可移动水,储气库的开发就越困难,从而导致较差的开发效果。对于较低的储气库孔隙压力,储气库的结合水通常是不动的,也就是说,产气为单相气体渗漏,从而提高了开发效果。制定合理的低渗透含水气藏开发计划显然对确保其有效开发具有重要意义。

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