MODELING OF PRODUCING PRESSURE IN HETEROGENEOUS OIL-BEARING RESERVOIRS

Mikhail Lubkov, O. Zakharchuk, V. Dmytrenko, O. Petrash
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引用次数: 1

Abstract

Numerical modeling of the distribution of the reservoir pressure drop in the vicinity of an operating well was carried out taking into account the inhomogeneous distribution of filtration characteristics (permeability and oil viscosity) in the near and distant zones of the well operation in order to study the practical aspects of filtration in heterogeneous oil-bearing formations based on a combined finite-element-difference method for non-stationary problem of piezoconductivity. The use of the combined finite-element-difference method enables to combine the advantages of the finite-element method and the finite difference method: to model geometrically complex areas, to find the value at any point of the object under study, while the implicit difference scheme. It is shown that the intensity of filtration processes in the vicinity of the operating well depends mainly on the permeability, and, to a lesser extent, on the viscosity of the oil. Moreover, the influence of the permeability of the oil phase in the remote zone (Rd < 5 m) is greater than the effect in the close zone (Rd > 5 m) of the operating well. In the case of low permeability of the oil phase in the vicinity of the existing well, to maintain stable oil production, it is necessary to place an injection well near the production well. Using the method suggested, it is possible to predict the effect of the injection well on the formation pressure distribution in the formation. The scientific novelty of the work lies in the study of the influence of the heterogeneous permeability and oil viscosity distribution on the reservoir pressures distribution around the wells by modeling filtration processes based on a combined finite-element-difference method. The practical significance of the research results comes down to confirming the close relationship between the heterogeneity of the porous medium and the reservoir pressures distribution around an operating producing well. The combined finite-element-difference method used in this work can be used to solve other filtration problems (for example, to calculate the gas saturation of a reservoir, create a method for calculating well flow rates, assess the effect of injection wells on filtration processes).
非均质含油油藏生产压力模拟
为了研究非平稳压电导率问题的非均质含油地层过滤的实际问题,基于有限元-差分联合方法,在考虑渗流特性(渗透率和油粘度)在井作业近、远区域的非均质分布的情况下,对作用井附近储层压降分布进行了数值模拟。结合有限元-差分法的使用,可以将有限元法和有限差分法的优点结合起来:可以对几何复杂的区域进行建模,可以在被研究对象的任意点上找到值,而隐式差分方案。结果表明,在作业井附近,过滤过程的强度主要取决于渗透率,其次取决于油的粘度。同时,远区(Rd < 5 m)油相渗透率的影响大于近区(Rd > 5 m)油相渗透率的影响。在现有井附近的油相渗透率较低的情况下,为了保持稳定的石油产量,有必要在生产井附近放置注水井。利用该方法,可以预测注水井对地层压力分布的影响。本工作的科学新颖之处在于,采用有限元-差分联合方法模拟过滤过程,研究非均质渗透率和油粘度分布对井周油藏压力分布的影响。研究结果的实际意义在于,确认了在产井周围多孔介质的非均质性与储层压力分布之间的密切关系。本研究中使用的有限元-差分组合方法可用于解决其他过滤问题(例如,计算储层的含气饱和度,创建计算井流量的方法,评估注水井对过滤过程的影响)。
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