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Reservoir geological model of reef-bank carbonate rocks of Ordavician in Tazhong area, Tarim basin, NW China

机译:塔里姆盆地塔山地区礁石银行岩石岩石水库地质模型

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The reservoir of Lianglitage formation mainly distribute in the Liang 1~Liang 2 section, and slight amount distribute in Liang 3 section. The microfacies are abundant and, and they apparently affect the development of the reservoir. Based on the geologic feature, we propound the concept:"microfacies combination". It is composed by two or several microfacies, and each microfacies have similar reservoir conditions. Using the seismic facies interpretation, combining the methods of deterministic modeling and stochastic modeling, the "microfacies combination" model is established. Appling the method that "microfacies combination" controls the modeling course, taking the wave impedance which has good corresponding relationship with reservoir as secondary variable, small layer application of stochastic modeling method based on the porosity model is finally established through the stochastic modeling method layer and layer. Considering the crack influence on permeability, the first step is establishing the fracture distribution model, then the permeability model is established taking the fracture distribution as secondary variable, which improves the practicability of permeability model.
机译:梁敏度形成的储层主要分布在梁1〜梁2段,略微分布于梁3段。微缩放是丰富的,并且它们显然影响了水库的发展。基于地质特征,我们提升了这个概念:“微电容组合”。它由两个或几个微电容组成,每种微缩放都具有类似的储层条件。使用地震相的解释,结合确定性建模和随机造型的方法,建立了“微缩胶组合”模型。应用“微缩法组合”控制建模过程的方法,采用与储存器具有良好相应关系的波阻抗作为次级变量,通过随机造型方法层,最终建立了基于孔隙率模型的随机建模方法的小层应用层。考虑到对渗透性的裂缝影响,第一步是建立断裂分布模型,然后建立渗透性模型作为次级变量,从而提高了渗透性模型的实用性。

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