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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >Verification And Proper Use Of Water-oil Transfer Function For Dual-porosity And Dual-permeability Reservoirs
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Verification And Proper Use Of Water-oil Transfer Function For Dual-porosity And Dual-permeability Reservoirs

机译:双孔双渗油藏水油传递函数的验证及正确使用

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摘要

Accurate calculation of multiphase fluid transfer between the fracture and matrix in naturally fractured reservoirs is a very crucial issue. In this paper, we will present the viability of the use of a simple transfer function to accurately account for fluid exchange resulting from capillary and gravity forces between fracture and matrix in dual-porosity and dual-permeability numerical models. With this approach, fracture- and matrix-flow calculations can be decoupled and solved sequentially, improving the speed and ease of computation. In fact, the transfer-function equations can be used easily to calculate the expected oil recovery from a matrix block of any dimension without the use of a simulator or oil-recovery correlations.rnThe study was accomplished by conducting a 3-D fine-grid simulation of a typical matrix block and comparing the results with those obtained through the use of a single-node simple transfer function for a water-oil system. This study was similar to a previous study (Alkandari 2002) we had conducted for a ID gas-oil system.rnThe transfer functions of this paper are specifically for the sugar-cube idealization of a matrix block, which can be extended to simulation of a match-stick idealization in reservoir modeling. The basic data required are: matrix capillary-pressure curves, densities of the flowing fluids, and matrix block dimensions.
机译:天然裂缝储层中裂缝与基质之间多相流体传输的准确计算是一个非常关键的问题。在本文中,我们将介绍使用简单传递函数准确解释双孔隙率和双渗透率数值模型中裂缝和基质之间的毛细管力和重力引起的流体交换的可行性。通过这种方法,可以将裂缝和基质流计算解耦并依次求解,从而提高了计算速度和简便性。实际上,无需使用模拟器或与采油量的相关性,就可以轻松地使用传递函数方程来从任何尺寸的矩阵块中计算出预期的采油量。该研究是通过进行3-D精细网格来完成的模拟典型的矩阵块,并将结果与​​通过使用单节点简单传递函数的水油系统获得的结果进行比较。该研究与我们之前对ID气-油系统进行的研究(Alkandari 2002)相似。本文的传递函数专门用于矩阵块的糖立方理想化,可以扩展为模拟糖块。火柴模型中的火柴理想化。所需的基本数据是:基质毛细管压力曲线,流动流体的密度和基质块尺寸。

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