各向异性地层在垂直井注入流体过程中的位移状态

IF 1 4区 工程技术 Q4 MECHANICS
A. I. Andreeva, A. A. Afanasyev
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引用次数: 0

摘要

摘要 在流经多孔介质的横截面问题框架内,研究了由垂直井系统开发的地层中流体的位移情况。考虑了各向异性地层的情况,其中位移流体的浮力影响很大。研究表明,在一般情况下,位移过程有五个相似性标准,其中一个标准决定了流体从油井流向地层的间隔。描述了可减少构造相似性参数数量的位移极限情况。研究了这些参数对采收率和扫井效率的影响。绘制了一张位移状态图,该图限制了相似性标准的影响范围和所揭示的极限情况。本研究的结果可能有助于石油和天然气行业估算各种油田开发方法的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regimes of Displacement from an Anisotropic Formation during Injection of Fluid through a Vertical Well

Regimes of Displacement from an Anisotropic Formation during Injection of Fluid through a Vertical Well

Regimes of Displacement from an Anisotropic Formation during Injection of Fluid through a Vertical Well

The regimes of fluid displacement from a formation developed by a system of vertical wells are studied within the framework of the cross-sectional problem of flow through a porous medium. The case of an anisotropic formation in which the effect of buoyancy of the displacing fluid is significant is considered. It is shown that in the generic case the displacement process is characterized by five similarity criteria, one of them determines the intervals of fluid flow from the well to the formation. The limiting cases of the displacement regimes in which the number of constitutive similarity parameters can be reduced are described. The influence of these parameters on the recovery factor and the sweep efficiency is studied. A diagram of displacement regimes that constrains the areas of influence of the similarity criteria and the revealed limiting cases is constructed. The results of the present study may be useful in the oil and gas industry in estimating the efficiency of various field development methods.

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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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