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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Lithology and fluid discrimination using rock physics-based modified upper Hashin–Shtrikman bound: an example from onshore Niger Delta Basin
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Lithology and fluid discrimination using rock physics-based modified upper Hashin–Shtrikman bound: an example from onshore Niger Delta Basin

机译:基于岩石物理的修改的上哈尔尼克曼绑定的岩性和流体歧视:来自陆上尼日尔三角洲盆地的一个例子

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The Ozifa reservoir is proven reservoir that cuts across the Northern and Greater Ughelli depo-belts of the Niger Delta Basin. This reservoir possesses heterogenous character southward of the field, making elastic properties, lithologies and fluid types difficult to describe accurately. In this study, rock physics template was applied to porosity and acoustic impedance (AI) crossplot clusters to illustrate rock–fluid relationships using modified Hashin–Shtrikman upper bound, Voigt upper bound and Reuss lower bound, as an input in the template. Values of acoustic impedance and porosity were used as lithofacies classification parameters for discrimination of lithofacies and fluid types. Our result showed that modified Hashin–Shtrikman upper bound line when applied in acoustic impedance (AI) and porosities (Φ) crossplot domain discriminated gas-filled reservoirs from brine filled reservoirs and shale effectively. Similarly, results from crossplot showed clear separation of shale, heteroliths filled with brine and gas bearing sand, which was not plausible using conventional petrophysical analysis. This approach was successfully applied in analysing lithofacies and fluid relationship in different well locations and serves as a model for successful prediction of different lithology and fluid types, a major requirement for determining effects of geological variables such as sorting, clay distributions on the reservoir connectivity and optimum production using time-lapse (4D) seismic interpretation.
机译:Ozifa水库是经过验证的水库,涉及尼日尔三角洲盆地的北部和大核博士队。该水库具有外源性的字符,使弹性性质,岩性和流体类型难以准确描述。在该研究中,将岩石物理模板应用于孔隙率和声阻抗(AI)交联簇,以说明使用改进的Hashin-Shtrikman上限,voigt上限和Reuss下限作为模板的输入来说明岩石流体关系。声阻抗和孔隙率的值用作岩散和流体类型的岩散分类参数。我们的结果表明,在声阻抗(AI)和孔隙率(φ)交叉表域的应用时,改进的Hashin-Shtrikman上界线有效地从盐水填充的储存器和页岩中辨别出气体填充储存器。类似地,来自交联的结果显示出含有盐水和气体砂的异质,含有盐水和气体砂的杂散,这与使用常规粪便物理分析不合理。成功地应用这种方法在不同井位置的分析和流体关系中,作为成功预测不同岩性和流体类型的模型,确定地质变量等分类,粘土分布对储层连接的主要要求。使用延时(4D)地震解释的最佳生产。

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