尼日尔三角洲近海HAX油田储层特征的流体岩性判别

E. V. Umeadi, A. Balogun
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摘要

针对尼日尔三角洲近海HAX油田储层特征进行了流体和岩性判别。选取、识别R_4500、R_5500、R_6500三个储层段,并对4口井进行对比;但只分析了R_5500水库。利用声波阻抗的Vp/Vs比、Vp/Vs的Lambda-Rho、密度的Mu-Rho和伽马射线、含水饱和度和密度颜色编码的Lambda-Rho等储层属性对弹性岩石进行交叉图分析,以区分流体和岩性。利用伽马射线对这些弹性岩石属性进行颜色编码,将4口井的R_5500储层划分为砂岩带和页岩带,这些结果表明,岩性识别主要在尼日尔三角洲盆地发现。通过含水饱和度颜色编码,将R_5500油藏划分为含油气带、盐水砂带和页岩带3个带,岩性和流体均有区分。从这些交叉图中可以看出,含水饱和度最小的簇对应于高含油饱和度的砂岩,而含水饱和度最大的簇对应于无油气带(盐水砂和页岩)。最后,通过密度颜色编码,将R_5500油藏划分为气砂带、油砂带、盐水砂带、页岩带4个流体类型区。结果表明,相对较低的声阻抗、Vp/Vs、λ -rho、mu-rho和密度(色标)值表明含油气砂层,而相对较高的声阻抗、Vp/Vs、λ -rho、mu-rho和密度(色标)值与非含油气层(页岩和盐水砂)有关。该研究已经能够利用感兴趣区域的弹性岩石性质交叉图来区分油气藏,并证明HAX油田在油气远景和高度经济的生产方面是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluid and Lithology Discrimination for Reservoir Characterization of HAX Field, Offshore Niger Delta
Fluid and lithology discrimination for reservoir characterization of HAX field, offshore Niger Delta was carried out in this study. Three reservoir intervals, R_4500, R_5500, and R_6500 were picked, identified, and correlated across the four wells; but only the R_5500 reservoir was analyzed. The cross-plot analysis of elastic rock properties with reservoir properties such as Vp/Vs ratio against Acoustic Impedance, Lambda-Rho against Vp/Vs, Mu-Rho against Density, and Lambda-Rho against Mu-Rho colour-coded by gamma ray, water saturation, and density respectively was carried out for fluid and lithology discrimination. The result of these elastic rock properties when colour-coded with gamma ray distinguished reservoir R_5500 into the sand zone and shale zone for the four wells, these results depict lithology discrimination as predominantly found in the Niger Delta basin. Consequently, when colour–coded by water saturation reservoir R_5500 was distinguished into three zones namely the hydrocarbon bearing zone, brine sand zone and shale zone indicative of both lithology and fluid discrimination. From these cross-plots, the clusters with the least water saturation correspond to highly charged hydrocarbon saturation sand while clusters with maximum water saturation correspond to non-hydrocarbon zone (brine sand and shale). Finally, when colour–coded by density reservoir R_5500 was distinguished into four zones namely gas sand zone and oil sand zone, brine sand zone, and shale zone indicating fluid types. The result shows relatively lower Acoustic Impedance, Vp/Vs ratio, lambda-rho, mu-rho, and density (as the colour-code) values indicating hydrocarbon bearing sand while the relatively higher Acoustic Impedance, Vp/Vs ratio, lambda-rho, mu-rho and density (as the colour-code) values are associated with non-hydrocarbon zone (shale and brine sand). This study has been able to discriminate hydrocarbon reservoirs using the cross-plots of elastic rock properties in the zone of interest and proven that the HAX field is viable in terms of hydrocarbon prospects and highly economical for production.
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