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Application of a finite element and boundary element coupling algorithm in pressure response of a fracture-vuggy gas reservoir

机译:有限元和边界元耦合算法在骨折 - 瓦格吉煤气藏压力响应中的应用

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In carbonate reservoirs, multiple large-scale caves are controlled by some single wells. The fluid flowing law in the reservoir is complex, and the production performance is unclear, which restricts the highly effective development of these kinds of reservoirs. In this paper, Darcy flow is used to characterize the fluid flow outside the cave, and the Navier-Stokes equation is used to characterize the free flow of the fluid in the cave. Based on the Darcy flow and Navier-Stokes equations, a fluid flow mathematical model is established for carbonate gas reservoirs with multiple large-scale caves. Then, the Beavers-Joseph-Saffman boundary condition, the finite element and boundary element coupling algorithm are proposed for computing the bottom-hole pseudo-pressure. Subsequently, we establish the interpretation graph for a large-scale cave reservoir and analyse the influence of the reservoir parameters on the pseudo-pressure and pseudo-pressure derivative curves. The results showed the following: (i) the larger the radius of the cave, the larger the concave-convex amplitude of the bottom-hole pressure curve. (ii) For the bottom-hole pressure curve, the smaller the distance, the earlier the convex appears and the larger the concave-convex amplitude. The research results can improve the development effects of carbonate reservoirs with large-scale caves.
机译:在碳酸盐储层中,多个大规模洞穴由一些单一孔控制。储存器中的流体流动法是复杂的,并且生产性能不明确,这限制了这些储层的高度有效发展。在本文中,达西流动用于表征洞穴外的流体流动,并且Navier-Stokes方程用于表征洞中流体的自由流动。基于达西流动和Navier-Stokes方程,为具有多个大规模洞穴的碳酸盐气体储层建立了流体流量数学模型。然后,提出了Beavers-Joseph-Saffman边界条件,有限元和边界元耦合算法用于计算底部孔伪压力。随后,我们建立了大规模洞穴储层的解释图,分析了储层参数对伪压和伪压力衍生曲线的影响。结果表明以下:(i)洞穴的半径越大,底部孔压力曲线的凹凸幅度越大。 (ii)对于底部孔压力曲线,距离越小,凸起出现的较早,凹凸幅度越大。研究结果可以提高大规模洞穴的碳酸盐储层的开发效果。

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