利用事件的实际指标对储层水动力模型进行参数化识别

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2022-12-30 DOI:10.5510/ogp20220400782
G. I. Dzhalalov, G. Moldabayeva, G. Kunayeva
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引用次数: 0

摘要

在石油工业发展的现阶段,数学建模被广泛应用于油田作业全周期开发设计与分析中。在建立地质和水动力模型的过程中,最费力和最困难的阶段是对实际开发数据的识别,并解决与地质和物理参数分析有关的不确定性。参数识别是建模过程中最重要的步骤,因为对象发展预测指标的可靠性程度取决于此阶段所获得结果的质量。本文介绍了油田开发历史上采用水动力模型计算预测方案的主要方法和结果。在为哈萨克斯坦Kenkiyak矿床选定区块建立地质和水动力模拟模型时,使用了地质和现场数据以及流体和岩石热压参数确定的研究数据。为了解决这一问题,采用了储层流体等温非定常空间过滤的Masket-Meres模型。利用最优控制理论,在梯度过程的基础上对所需参数进行了细化。解决了水平井提高油田指定区段采收率可行性的预测问题。关键词:适应;预测任务;采油;石油储层;相渗透率;水动力模型。
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Parametric identification of the hydrodynamic model of the reservoir by the actual indicators of the event
At the present stage of the development of the oil industry, mathematical modeling is widely used in the design and analysis of development during the entire cycle of field operation. The most laborious and difficult stage in the creation of geological and hydrodynamic models is their identification to the actual development data and resolution of uncertainties associated with the analysis of geological and physical parameters. Parametric identification is the most important procedure in the modeling process, because the degree of reliability of predictive indicators of object development depends on the quality of the results obtained at this stage. The paper presents the main methods and results of adapting the hydrodynamic model in the history of oil field development in order to use the model to calculate forecast options. When creating a geological and hydrodynamic simulation model for the selected block of the Kenkiyak deposit of Kazakhstan, geological and field data and research data on the determination of thermobaric parameters of fluids and rocks were used. To solve this problem, the Masket-Meres model of isothermal unsteady spatial filtration of reservoir fluids was adopted. The desired parameters are refined on the basis of gradient procedures using optimal control theory. The predictive problem of the feasibility of using horizontal wells to increase the oil recovery coefficient of the specified sector of the field has been solved. Keywords: adaptation; predictive task; oil recovery; oil reservoir; phase permeability; hydrodynamic model.
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来源期刊
SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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