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首页> 外文期刊>Transport in Porous Media >Deformable Porous Media Saturated by Three Immiscible Fluids: Constitutive Modelling and Simulations of Injection and Imbibition Tests
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Deformable Porous Media Saturated by Three Immiscible Fluids: Constitutive Modelling and Simulations of Injection and Imbibition Tests

机译:三种不混溶流体饱和的可变形多孔介质:注射和吸水试验的本构模型和模拟

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摘要

A number of environmental and petroleum engineering applications involve the coexistence of three non-miscible fluids. In this work, basic constitutive relations and computational schemes are developed in order to simulate fluid injection and imbibition processes in a deformable rock through the finite element method. For this purpose, the following ingredients are worked out: (i) simple, but general formulas for the effective saturations; (ii) constitutive expressions for the relative permeabilities of water, oil and gas in terms of effective saturations; and (iii) constitutive capillary pressure relationships. These ingredients are introduced in a domestic finite element code where the primary variables are the solid displacement vector and the three fluid pressures. Given the abundance of experimental data in the petroleum engineering field, the whole framework is firstly tested by simulating gas injection into a rock core sample initially saturated by water and oil. Sensitivity analyses are performed upon varying key constitutive, loading and numerical parameters, to assess the physical and computational outputs of the proposed framework. Particular attention is given to the influence on the model predictions of several expressions defining relative permeabilities. Simulations of water-alternated-gas injection and of counter-current water imbibition tests are also performed, to establish the reliability of the proposed constitutive and computational framework.
机译:许多环境和石油工程应用涉及三种不可混溶流体的共存。在这项工作中,开发了基本的本构关系和计算方案,以通过有限元方法模拟可变形岩石中的流体注入和吸收过程。为此,计算出以下成分:(i)简单但有效饱和度的通用公式; (ii)以有效饱和度表示的水,油和气的相对渗透率的本构表达式; (iii)本构毛细管压力关系。这些成分以国内有限元代码形式引入,其中主要变量是固体位移矢量和三个流体压力。考虑到石油工程领域的大量实验数据,首先通过模拟气体注入到最初被水和油饱和的岩心样品中来测试整个框架。在改变关键的本构,载荷和数值参数时进行敏感性分析,以评估所提出框架的物理和计算输出。特别注意几个定义相对渗透率的表达式对模型预测的影响。还进行了水交替气注入和逆流吸水试验的模拟,以建立所提出的本构和计算框架的可靠性。

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