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Hydrocarbon saturation in Bakken Petroleum System based on joint inversion of resistivity and dielectric dispersion logs

机译:基于电阻率和介电弥散测井联合反演的巴肯石油系统中的烃饱和度

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摘要

Bakken Petroleum System (BPS) is composed of both conventional and unconventional units, which exhibits significant variations in lithology, rock texture, clay content, total organic carbon, accompanied by high connate water salinity, presence of disseminated pyrite grains, and low values of porosity. These petrophysical attributes of the BPS lead to inconsistency in the oil-in-place estimates for those obtained from Electromagnetic (EM) induction log, Nuclear Magnetic Resonance (NMR) log, dielectric dispersion log measured by Array Dielectric Tool (ADT), and Dean-Stark core measurements. For purposes of improved hydrocarbon saturation estimation and petrophysical characterization in the BPS, a joint-inversion-based interpretation was performed on dispersive electrical conductivity and dielectric permittivity measurements at 4 dielectric-log-acquisition frequencies and 1 induction resistivity acquired at 20 kHz. This analysis was performed across a 350-ft depth interval in one of the science wells intersecting the BPS. Three geo-electromagnetic mixing models, namely Complex Refractive Index model, Stroud-Milton-De model, and Waxman Smits model are integrated and coupled to the inversion scheme to simultaneously estimate water saturation, formation brine conductivity, cementation exponent and saturation exponent in BPS.
机译:Bakken石油系统(BPS)由常规单元和非常规单元组成,在岩性,岩石质地,粘土含量,总有机碳方面表现出显着变化,伴有高原生水盐度,弥散的黄铁矿晶粒和低孔隙率值。 BPS的这些岩石物理属性导致从电磁(EM)感应测井,核磁共振(NMR)测井,由阵列介电工具(ADT)测量的介电色散测井和Dean测井获得的原位油估算结果不一致-Stark核心测量。为了改进BPS中的烃饱和度估算和岩石物理特征,在4个介电对数采集频率和20 kHz采集的1个感应电阻率下,对色散电导率和介电常数测量进行了基于联合反演的解释。该分析是在与BPS相交的一口科学井中,以350英尺的深度进行的。集成了三种地电磁混合模型,即复数折射率模型,Stroud-Milton-De模型和Waxman Smits模型,并与反演方案耦合,以同时估算BPS中的水饱和度,地层盐水电导率,胶结指数和饱和指数。

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