Analytical Solution to the Problem of Injection or Reduction of the Formation Pressure in the Reservoir with a Fracture

IF 1 4区 工程技术 Q4 MECHANICS Fluid Dynamics Pub Date : 2024-05-08 DOI:10.1134/S0015462824600081
A. M. Il’yasov, V. N. Kireev
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Abstract

The problem of injection of Newtonian fluid at a constant flow rate through an injection well into an initially undisturbed infinite reservoir with an erosive vertical main fracture of constant width is considered. Using the Laplace transform method, analytical solutions are obtained for the pressure fields in the fracture and reservoir, the flow velocity in the fracture, as well as the equations for fluid trajectories in the reservoir and in the main fracture are derived. The solutions obtained are also applicable to the problem of fluid withdrawal into a production well intersected by a vertical main fracture. Nonstationary two-dimensional pressure fields in the reservoir, as well as the pressure and velocity fields in the fracture, are constructed.

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含裂缝储层注入或降低地层压力问题的分析解决方案
摘要 研究了牛顿流体以恒定流速通过注水井注入初始未受扰动的无限储层和宽度不变的侵蚀性垂直主裂缝的问题。利用拉普拉斯变换方法,得到了裂缝和储层压力场、裂缝流速的解析解,并推导出了储层和主裂缝中的流体轨迹方程。所得到的解也适用于垂直主裂缝相交的生产井的流体抽取问题。构建了储层中的非稳态二维压力场以及裂缝中的压力场和速度场。
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来源期刊
Fluid Dynamics
Fluid Dynamics MECHANICS-PHYSICS, FLUIDS & PLASMAS
CiteScore
1.30
自引率
22.20%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Fluid Dynamics is an international peer reviewed journal that publishes theoretical, computational, and experimental research on aeromechanics, hydrodynamics, plasma dynamics, underground hydrodynamics, and biomechanics of continuous media. Special attention is given to new trends developing at the leading edge of science, such as theory and application of multi-phase flows, chemically reactive flows, liquid and gas flows in electromagnetic fields, new hydrodynamical methods of increasing oil output, new approaches to the description of turbulent flows, etc.
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