Dynamics of the oil reservoir depletion

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS Geofizicheskiy Zhurnal-Geophysical Journal Pub Date : 2023-01-30 DOI:10.24028/gj.v44i5.272333
M. Lubkov, K. Mosiychuk
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Abstract

In order to study the dynamics of depletion in heterogeneous oil reservoirs on the base of combined finite-element-difference method for the non-stationary problem of piezoconductivity we have carried out a numerical simulation of the pressure distribution in vicinity of the operating well. At that we have taken into account the heterogeneous distribution of filtration characteristics inside the reservoir and the oil infiltration parameters on the boundaries of the reservoir. The developed method for solving the non-stationary problem of piezoconductivity in deformed oil formations allows us adequately to describe the distribution of pressure near production and injection well systems in real operating conditions. We have shown that depletion processes in vicinity of the active well mainly depend on the intensity of oil production and the degree of oil infiltration at the boundaries of the reservoir’s area and to a lesser extent on the filtration parameters inside the reservoir. Therefore, in order to maintain the proper level of oil production in the reservoir’s area, it is necessary, for example, thanks to the use of modern technologies (system of injection wells), to ensure a sufficient inflow of the oil phase at the borders of the considered area. We have shown that in the cases of low oil infiltration at the boundaries of the reservoir area, the value of depletion is directly proportional to the production power of the well. At the same time, a decreasing of the reservoir permeability leads to a slow downing of depletion processes. The limiting value of the oil boundary infiltration coefficient, which allows achieving industrial oil production, is m. At that, the time of reaching of the stationary productive regime is directly proportional to the value of the oil permeability coefficient inside the reservoir. Before installing a system of production and injection wells in heterogeneous oil reservoirs, it is necessary to carry out a systematic analysis of the degree of depletion of the working reservoir’s areas in order to place them in such a way that would ensure the effective dynamics of filtration processes around these areas.
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油藏枯竭动力学
为了研究非均质油藏的衰竭动力学,在压电传导非平稳问题的有限元-差分组合方法的基础上,对工作井附近的压力分布进行了数值模拟。在这一点上,我们考虑了储层内部过滤特性的非均匀分布和储层边界上的石油渗透参数。所开发的解决变形油层中压电传导率非平稳问题的方法使我们能够充分描述实际操作条件下生产和注入井系统附近的压力分布。我们已经表明,活动井附近的枯竭过程主要取决于石油生产强度和油藏区域边界的石油渗透程度,在较小程度上取决于油藏内部的过滤参数。因此,为了保持储层区域的适当石油生产水平,例如,由于使用了现代技术(注水井系统),有必要确保在考虑区域的边界处有足够的油相流入。我们已经表明,在储层区域边界的低油渗透情况下,损耗值与井的生产能力成正比。同时,储层渗透率的降低导致枯竭过程的减缓。实现工业石油生产的石油边界渗透系数的极限值为m。此时,达到稳定生产状态的时间与油藏内部的石油渗透系数值成正比。在非均质油藏中安装生产井和注入井系统之前,有必要对工作油藏区域的枯竭程度进行系统分析,以确保这些区域周围过滤过程的有效动态。
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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