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Integration of a Multi-Frequency Dielectric Measurement and Advanced Wireline Logs for the Enhanced Characterization of Carbonate Reservoirs of the Western Kazakhstan

机译:多频电介质测量和高级有线测井的集成,以增强哈萨克斯坦西部碳酸盐储层的增强

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Saturation evaluation based on resistivity methods have been widely accepted industry standard for the decades. Formation Evaluation in carbonates usually relatively straightforward due to simple lithology and resistivity-based methods works perfectly due to high formation water salinity. However, complexity and variation of carbonate texture and wettability makes estimating of saturation solely on resistivity methods challenging especially in case of the paucity of special core analysis (SCAL) data. New developments in logging technology, especially in dielectric logging, is aiming to improve the log derived interpretation and reduce the uncertainties of the evaluation. Outputs of dielectric dispersion logs including computation of Archie's parameters (m=n), water-filled porosity enable clearly identified the hydrocarbon-bearing zones despite misleading oil saturation calculated using resistivity-dependent saturation approach in front of most porous reservoir. Water saturation computed with inverted from dielectric measurement Archie's parameters allows accurately identify the type of fluid (hydrocarbon or water) filling the free pore space and gain insight prior to the formation sampling and well test. The objective of this work is to describe a comprehensive approach integrating dielectric measurement and other advanced sets of wireline logs for petrophysical characterization of carbonate reservoirs. This paper is intended to discuss in detail a case study from the Western Kazakhstan in which the integration of advanced petrophysical logs has enabled a robust reservoir and fluid characterization of carbonate reservoir and provided insights for formation testing results in advance. The extensive logging suite to address all the key challenges included standard logging, dielectric dispersion, nuclear magnetic resonance, and formation microimager. The reservoir fluids and dynamic properties were characterized by a series of formation sampling. The integration of dielectric, nuclear magnetic resonance and formation microimager measurements has played a major role in characterizing formation heterogeneity and reveal pore structure type, a dielectric multi-frequency measurement is being utilized to measure the flushed zone oil saturation relatively independent of pore fluid salinity, rock texture, and composition. The comparative analysis of well-logging and well-test results was carried out. Saturation types of 6 tested objects out of 6 obtained from well-test show perfect match with predicted reservoir saturation from petrophysical evaluation.
机译:基于电阻率方法的饱和度评估已被广泛接受数十年的行业标准。由于基于简单的岩性和电阻率的方法,碳酸盐的形成评估通常是由于基于简单的岩性和电阻率的方法,因此由于高层水盐度完美地工作。然而,碳酸盐质地和润湿性的复杂性和变化是特别是在特殊核心分析(SCAS)数据的缺乏的情况下挑战饱和度的饱和度。测井技术的新发展,特别是在介电记录中,旨在改善日志衍生的解释并降低评估的不确定性。尽管使用最多多孔储层的电阻率依赖性饱和方法计算出误导性饱和方法,但是,介电分散日志包括计算的介电分散原木的输出可以清楚地识别出碳氢化合物区。使用逆变介电测量的水饱和度Archie的参数允许精确地识别填充自由孔隙空间的液体(烃或水),并在形成采样和井测试之前获得洞察力。这项工作的目的是描述一种整合介质测量和其他先进的有线线路的综合方法,用于碳酸盐储存器的岩石物理表征。本文旨在详细讨论哈萨克斯坦西哈萨克斯坦的案例研究,其中先进的岩石物理原木的整合使得碳酸盐储层的鲁棒储层和流体表征,并提前提供了形成测试的洞察。满足所有关键挑战的广泛测井套件包括标准测井,介电分散,核磁共振和形成微爱。通过一系列形成采样,储存流体和动态性能的特征在于。电介质,核磁共振和地层微爱测量的集成在表征非均质性和揭示孔结构型中起作用了主要作用,采用介电多频测量来测量孔隙液盐度相对独立的冲洗区油饱和度,岩石纹理和组成。进行了井测井和测试结果的比较分析。饱和类型的6种测试的物体超出了从良好的测试中获得的6,与Petrophysicalic评估的预测储层饱和度完美匹配。

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