Methodology for calculating the pre-exponential factor using the isoconversional principle for the numerical simulation of the air injection process

Padilla-Reyes Jorge-Mario, Trujillo-Portillo Marta-Liliana, Niz-Velasquez Eider
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Abstract

The main challenge to predict at Field scale the performance of an air injection process is to understand the oil oxidation process and to have a kinetic model of reactions enabling the prediction of process behavior in a reservoir numerical simulator, under different operating conditions.   Recently, the Isoconversional Principle has been implemented for studying the kinetics of reactions associated with oil oxidation during air injection, based on Ramped Temperature Oxidation tests (RTO). In different published papers, the isoconversional analysis has been used to study the oxidation characteristics of different rock-fluid systems, identify groups of dominant reactions during the crude oil oxidation process, and estimate the effective activation energy for each of the identified reactions.   However, in none of them has a procedure been established for estimating the pre-exponential factor, as this is not a direct measure of isoconversional methods. In this article, a mathematical procedure is proposed for estimating the pre-exponential factor based on the application of Friedman's isoconversional method, inteded for characterizing the kinetics of the reactions associated with the In Situ Combustion process.  This procedure was validated with experimental information and a kinetic model proposed in the literature to model the oxidation behavior of heavy crude.
用等转换原理计算喷气过程数值模拟的指数前因子的方法
在现场规模上预测空气注入过程的主要挑战是了解油的氧化过程,并建立反应的动力学模型,以便在油藏数值模拟器中预测不同操作条件下的过程行为。最近,基于变温氧化试验(RTO),等转换原理被应用于研究喷气过程中与油氧化相关的反应动力学。在不同的论文中,等转换分析已被用于研究不同岩石-流体体系的氧化特征,识别原油氧化过程中的优势反应群,并估计每种识别反应的有效活化能。然而,它们都没有建立一个估计指数前因子的程序,因为这不是等转换方法的直接测量。在本文中,提出了一种基于弗里德曼等转换方法的估计指数前因子的数学方法,旨在表征与原位燃烧过程相关的反应动力学。用实验资料和文献中提出的模拟重质原油氧化行为的动力学模型验证了这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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