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Numerical modeling fractures and fractal network feature-wormhole of CHOPS

机译:数值模拟骨折与分形网络特征 - 虫虫

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Research has shown that fractures can be modeled as a non-welded contact (linear slip) interface. Therefore, in the long wavelength limit, fractures embedded in a homogeneous medium can be equivalent to a transversely isotropic media (TI). We have extended linear slip theory (Schoenberg, 1980) and the generalized homogeneous finite difference approach (Korn and Stockl, 1982) to model horizontal fractures, vertical fractures and 3D wormholes formed during cold heavy oil production with sand (CHOPS). This paper illustrates that seismic PP and PS wave propagation in a unique homogeneous medium is strongly affected by properties of the fractures. We also present a case study of fluid filled cracks in the single fracture. Thus, this research contributes to reservoir characterization because reservoir permeability directly governs hydrocarbon production.
机译:研究表明,裂缝可以以非焊接接触(线性滑动)界面为模拟。因此,在长波长限度中,嵌入均匀介质中的裂缝可以等于横向各向同性介质(Ti)。我们具有扩展的线性滑动理论(Schoenberg,1980)和广义均匀有限差分方法(Korn和Stockl,1982),以模拟在冷重油生产中形成的水​​平裂缝,垂直骨折和3D虫洞,用砂(Chops)。本文说明了独特的均匀介质中的地震PP和PS波传播受到裂缝性质的强烈影响。我们还提出了一种案例研究单个骨折中的流体填充裂缝。因此,该研究有助于储层特征,因为储层渗透性直接治理碳氢化合物生产。

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