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Modeling of Alkali Surfactant Polymer Process by Coupling a Multi-purpose Simulator to the Chemistry Package PHREEQC

机译:碱表面活性剂聚合物工艺建模通过将多用途模拟器耦合到化学包装Phreeqc

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Accurate modeling of an Alkali Surfactant Polymer (ASP) flood requires detailed representation of the geochemistry and, if natural acids are present, the saponification process. Geochemistry and saponification affect the propagation of the injected chemicals and the amount of generated natural soaps. These in turn determine the chemical phase behavior and hence the effectiveness of the ASP process. In this paper it is shown that by coupling the Shell in-house simulator MoReS with PHREEQC a robust and flexible tool has been developed to model ASP floods. PHREEQC is used as the chemical reaction engine, which determines the equilibrium state of the chemical processes modeled. MoReS models the impact of the chemicals on the flow properties, solves the flow equations and transports the chemicals. The validity of the approach is confirmed by benchmarking the results with the ASP module of the UTCHEM simulator (UT Austin). Moreover, ASP core floods have been matched with the new tool. The advantages of using PHREEQC as the chemical engine are its rich database of chemical species and its flexibility to change the chemical processes to be modeled. Therefore, the coupling procedure presented in this paper can also be extended to other chemical-EOR methods.
机译:碱表面活性剂聚合物(ASP)洪水的精确建模需要地球化学的详细表示,如果存在天然酸,则皂化过程。地球化学和皂化会影响注​​入的化学品和产生的天然肥皂的量。这些反过来决定了化学相行为,从而确定了ASP过程的有效性。在本文中,表明,通过将外壳内部模拟器使用Phreeqc耦合,已经开发了一种强大而灵活的工具来模拟Asp洪水。 Phreeqc用作化学反应引擎,该化学反应引擎确定建模的化学过程的平衡状态。 Mores模拟化学物质对流动性质的影响,解决了流动方程并运输化学品。通过使用UTCHEM模拟器(UT Austin)的ASP模块基准测试结果,确认了方法的有效性。此外,ASP核心洪水与新工具相匹配。使用Phreeqc作为化学发动机的优势是其丰富的化学物质数据库及其灵活性,以改变要建模的化学过程。因此,本文呈列的偶联过程也可以扩展到其他化学益叶方法。

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