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Novel Methods of Identifying Hydrocarbon Bearing Formation with Low Resistivity Contrast from Conventional Logs in Tight Sandstone Reservoirs of North Ordos Basin

机译:用低电阻率鉴定烃轴承形成的新方法与北鄂尔多斯盆地紧密砂岩储层中的常规原木对比

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It’s difficult in identifying hydrocarbon bearing formation from conventional logs in tight sandstone reservoirs due to the low resistivity contrast caused by the complicated pore structure and high water saturation in north Ordos basin. The experiment of relative permeability illustrates that the water saturation of the target Chang 6 Formation mentioned in this study reach to 58%. To identify hydrocarbon bearing formations from water saturated layers, a method, which is the minimal resistivity method is introduced. To obtain the minimal resistivity of hydrocarbon bearing reservoir, two novel methods, which are formation simulation and rock resistivity experiments, are proposed in this paper. The results shows that the minimal resistivity of hydrocarbon bearing layer in Chang 6 Formation is 40?.m. Field examples shows that the proposed methods are effective in obtaining the minimal resistivity and identifying hydrocarbon bearing formations with high water saturation, they can be extended widely in other tight sandstone reservoirs.
机译:由于近鄂尔多斯盆地复杂的孔隙结构和高水饱和度,识别从紧密砂岩储层的常规原木中的碳氢化合物轴承形成。相对渗透性的实验说明本研究中提到的靶常数6的水饱和达到58%。为了鉴定水饱和层的烃轴承形成,引入了一种方法,即最小电阻率法。为了获得烃轴承储存器的最小电阻率,本文提出了两种新方法,即形成模拟和岩石电阻率实验。结果表明,温度6形成中的烃轴承层的最小电阻率为40?。领域的示例表明,该方法在获得具有高水饱和度的最小电阻率和识别烃形状的方法中是有效的,它们可以广泛地延伸到其他紧密的砂岩储层中。

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