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Application of a mathematical method in calculation of the skin variation during a real field acidizing operation

机译:一种数学方法在实场酸化操作期间的皮肤变化计算中的应用

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The efficiency of an acidizing operation is usually assessed through ordinary well testing methods. These methods are performed only after the acidizing operation, and it is difficult to monitor and evaluate real-time efficiency of acidizing operation. Understanding the performance of the acidizing during the service, by analysis of the acidizing data is a viable approach to this costly and challenging process. The estimation of the skin changes needs an appropriate mathematical method that can handle the main aspects of an acidizing operation. It is tedious to model a real acidizing operation due to the heterogeneity of the reservoir, an unknown reaction rate of acid in reservoir condition, unwanted fluid loss, opening and closing of the wing valve, etc. In this paper, we have presented a new well testing method for calculating the skin variations of open hole vertically drilled carbonate reservoir during an acidizing operation, by using history matching of the surface pressure data. The proposed method is based on continuity equations of acid in the reservoir coupled with analytical equations of ORPM (Output Rate Prediction Method) in the wellbore. The novelty of the proposed method is using a new mass transfer coefficient in continuity equations of acid, and a mathematical approach (ORPM) for the appropriate estimation of bottomhole acid injection rate and fluid loss, that lead to a proper evaluation of the skin variation during a field acidizing operation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通常通过普通孔测试方法评估酸化操作的效率。这些方法仅在酸化操作之后进行,并且难以监测和评估酸化操作的实时效率。了解服务期间酸化的性能,通过分析酸化数据是这种昂贵和具有挑战性的过程的可行方法。皮肤变化的估计需要适当的数学方法,可以处理酸化操作的主要方面。由于储层的异质性模型,储存条件的异质性,酸中未知的反应速率,翼阀的不良反应速率,翼阀的不良反应速度等是繁重的。在本文中,我们提出了一个新的通过使用表面压力数据的历史匹配计算酸化操作期间垂直钻碳酸盐储存器的开孔垂直钻井储存器的皮肤变化的良好测试方法。该方法基于储层中酸中的酸连续性方程,其与井筒中的ORPM(输出速率预测方法)的分析方程联接。所提出的方法的新颖性是使用酸连续性方程的新的传质系数,以及用于适当估计底孔酸注射速率和流体损失的数学方法(ORPM),这导致对皮肤变异的适当评估现场酸化操作。 (c)2018年elestvier有限公司保留所有权利。

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