不同储层流动几何形状下预冲酸化体积算法的数学重构提高储层增产效果

Justice Osuala, D. I. Egu, A. J. Ilozobhie, Blessing Ogechi Nwojiji
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引用次数: 0

摘要

研究表明,每年平均有35%的储层酸增产作业失败,原因是对井下酸投放的了解有限。为预冲酸体积设计的现有模型仅限于线性、径向和椭球形油藏几何形状,因此不能考虑典型非均质油藏的地质漂移。由于储层的动态性和非均质性,可能会偏离定义的流动几何形状,因此在估计酸投放量时可能会出现错误,因此很难准确估计增产作业所需的酸体积。本研究旨在通过推导一个数学模型来评估偏离线性和径向流动几何形状的油藏的体积,从而促进油藏流动工程的可持续性。这有助于引入一种新的几何形状,有助于复杂和非均质储层的可解释性。利用SPDC石油化学实验室的储层岩心数据进行敏感性分析和调查,以了解线性、径向和修正流动几何形状之间的关系。给出了直线、径向和非直线的分析结果。这些结果证明了修正后的储层酸化预冲酸量计算公式的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Reservoir Stimulation through Mathematical Remodeling of Pre-Flush Acidizing Volume Algorithm for Different Reservoir Flow Geometries
Studies show that an average of 35% of reservoir acid stimulation operations executed every year fails because of limited knowledge of downhole acid placement. Existing models designed for acid pre-flush volumes are limited to Linear, Radial and Ellipsoidal reservoir geometries, therefore, do not account for geological drifts of a typical heterogenic reservoir. This can be erroneous while estimating acid placement volumes as reservoirs can deviate from defined flow geometries due to their dynamic and heterogeneous nature, thereby challenging to estimate acid volumes precisely for stimulations. This study aims to foster sustainability in reservoir flow engineering by deriving a mathematical model that evaluates volumes for reservoirs with flow geometries that deviate from linear and radial. This was established to help introduce a new geometry contributing to the accountability of complex and heterogeneous reservoirs. Sensitivity analysis and investigation using reservoir core data from SPDC Petroleum Chemistry Laboratory were carried out to understand the relationship between Linear, Radial and Modified flow geometries. Analytical results for linear, radial and the fied were generated. These results proved the precision of the modified equation for calculating pre-flush acid volume for reservoir acid stimulation operation.
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