Thermodynamically consistent Darcy–Brinkman–Forchheimer framework in matrix acidization

Yuanqing Wu, Jisheng Kou, Shuyu Sun, Yu-Shu Wu
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引用次数: 9

Abstract

Matrix acidization is an important technique to enhance oil production at the tertiary recovery stage, and its numerical simulation is never concluded. From one of the earliest models, i.e. the two-scale model (Darcy framework), the Darcy-Brinkman-Forchheimer (DBF) framework is developed by adding Brinkman term and Forchheimer term to the momentum conservation equation. However, in the momentum conservation equation of the DBF framework, porosity is put outside of the time derivation term, which cannot describe the change of porosity well. Thus, this work changes the expression so that the modified momentum conservation equation can satisfy Newton's second law. The modified framework is called improved DBF framework. Furthermore, based on the improved DBF framework, the thermal DBF framework is given by introducing the energy balance equation to the improved DBF framework. Both of the frameworks are verified by the former works through numerical experiments and chemical experiments in labs. Parallelization to the codes of the complicated frameworks is also realized, and good scalability can be achieved.
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基质酸化中热力学一致的Darcy-Brinkman-Forchheimer框架
基质酸化是三次采油阶段提高产油量的一项重要技术,其数值模拟尚未得出结论。Darcy-Brinkman-Forchheimer (DBF)框架是在最早的模型之一,即双尺度模型(Darcy框架)的基础上,通过在动量守恒方程中加入Brinkman项和Forchheimer项而发展起来的。然而,在DBF框架动量守恒方程中,孔隙度被排除在时间推导项之外,不能很好地描述孔隙度的变化。因此,这项工作改变了表达式,使修正后的动量守恒方程能够满足牛顿第二定律。修改后的框架称为改进的DBF框架。在改进DBF框架的基础上,引入能量平衡方程,给出了热DBF框架。本文通过数值实验和实验室化学实验对两种框架进行了验证。实现了复杂框架代码的并行化,具有良好的可扩展性。
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