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首页> 外文期刊>Special topics & reviews in porous media >FACTORS AFFECTING THE GRAVITY DRAINAGE MECHANISM FROM A SINGLE MATRIX BLOCK IN NATURALLY FRACTURED RESERVOIRS
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FACTORS AFFECTING THE GRAVITY DRAINAGE MECHANISM FROM A SINGLE MATRIX BLOCK IN NATURALLY FRACTURED RESERVOIRS

机译:影响天然裂缝性储层单一基质块重力排水机理的因素

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Despite numerous experimental and numerical studies, fundamental understanding of how the matrix block height, the density difference between petroleum and gas, and matrix capillary pressure could affect the oil recovery from a single matrix block in naturally fractured reservoirs remains a topic of debate in the literature. In this work a one-dimensional gravity drainage model developed by Firoozabadi and Ishimoto (1994) is considered and numerically solved. The Fourier series method is applied for a numerical Laplace inversion of the dimensionless mathematical model; this type of inversion method has rarely been used in petroleum applications. The obtained results revealed that by increasing the matrix block height as well as the density difference between oil and gas, both the drainage flow rate and the cumulative production increased. In contrast, by increasing the matrix capillary pressure, both the drainage flow rate and the cumulative production decreased. The findings of this work can be helpful to better understand the behavior of the gravity drainage process in fractured porous media.
机译:尽管进行了大量的实验和数值研究,但对基质裂缝高度,石油与天然气之间的密度差以及基质毛细管压力如何影响天然裂缝性油藏中单个基质区块的采油量的基本理解仍然是文献中争论的话题。 。在这项工作中,考虑了Firoozabadi和Ishimoto(1994)开发的一维重力排水模型,并对其进行了数值求解。傅里叶级数方法用于无量纲数学模型的数值拉普拉斯反演。这种类型的反演方法很少用于石油应用中。所得结果表明,通过增加基质块的高度以及油气之间的密度差,排水流量和累积产量都增加了。相反,通过增加基质毛细管压力,排水流速和累积产量都降低了。这项工作的发现有助于更好地了解重力作用在多孔多孔介质中的排水过程。

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