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Application of Real Rock Pore-throat Statistics to a Regular Pore Network Model

机译:真正岩石喉咙统计在普通孔网模型中的应用

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This work reports the application of real rock statistical data to a previously developed regular pore network model in an attempt to produce an accurate simulation tool with low computational overhead. A core plug from the St. Peter Sandstone formation in Indiana was scanned with a high resolution micro CT scanner. The pore-throat statistics of the three-dimensional reconstructed rock were extracted and the distribution of the pore-throat sizes was applied to the regular pore network model. In order to keep the equivalent model regular, only the throat area or the throat radius was varied. Ten realizations of randomly distributed throat sizes were generated to simulate the drainage process and relative permeability was calculated and compared with the experimentally determined values of the original rock sample. The numerical and experimental procedures are explained in detail and the performance of the model in relation to the experimental data is discussed and analyzed. Petrophysical properties such as relative permeability are important in many applied fields such as production of petroleum fluids, enhanced oil recovery, carbon dioxide sequestration, ground water flow, etc. Relative permeability data are used for a wide range of conventional reservoir engineering calculations and in numerical reservoir simulation. Two-phase oil water relative permeability data are generated on the same core plug from both pore network model and experimental procedure. The shape and size of the relative permeability curves were compared and analyzed and good match has been observed for wetting phase relative permeability but for non- wetting phase, simulation results were found to be deviated from the experimental ones. Efforts to determine petrophysical properties of rocks using numerical techniques are to eliminate the necessity of regular core analysis, which can be time consuming and expensive. So a numerical technique is expected to be fast and to produce reliable results. In applied engineering, sometimes quick result with reasonable accuracy is acceptable than the more time consuming results. Present work is an effort to check the accuracy and validity of a previously developed pore network model for obtaining important petrophysical properties of rocks based on cutting-sized sample data
机译:这项工作报告了真实岩石统计数据的应用于先前开发的常规孔网络模型,试图产生具有低计算开销的精确仿真工具。使用高分辨率的Micro CT扫描仪扫描印第安纳州圣保镜砂岩地层的核心插头。提取了三维重建岩石的孔喉统计,并将孔隙尺寸的分布应用于普通孔网络模型。为了保持等同的模型规则,只有喉部区域或喉部半径变化。产生10种随机分布的喉部尺寸的实现以模拟排水过程,并计算出相对渗透率并与原始岩石样品的实验确定值进行比较。详细解释了数值和实验程序,并讨论了与实验数据相关的模型的性能。诸如相对渗透性的岩石物理性质在许多施加的领域中是重要的,例如生产石油流体,增强的溢油,二氧化碳封存,地下水量等。相对渗透数据用于各种传统的储层工程计算和数值水库仿真。在孔网络模型和实验程序中,在同一核心插头上产生两相油水相对渗透性数据。比较和分析相对渗透性曲线的形状和尺寸,并且已经观察到润湿相位相对渗透性的良好匹配,但对于非润湿相,发现模拟结果偏离实验结果。使用数值技术确定岩石岩石物理特性的努力是消除常规核心分析的必要性,这可能是耗时和昂贵的。因此,预计数值技术将快速并产生可靠的结果。在应用工程中,有时可以使用合理的精度快速导致比耗时的结果可接受。目前的工作是一种努力检查先前开发的孔网络模型的准确性和有效性,以获得基于切割样本数据的岩石的重要岩石物理特性

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