碳酸盐岩和硅质碎屑岩测井综合解释的结果——选定地层案例研究的异同

IF 0.4 Q4 ENVIRONMENTAL SCIENCES Geology, Geophysics and Environment Pub Date : 2019-11-22 DOI:10.7494/GEOL.2019.45.3.163
Sebastian Waszkiewicz, R. Alvarez, J. Jarzyna
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引用次数: 1

摘要

本文利用古巴油区和波兰喀尔巴阡前深层气藏的地质、测井资料,比较了两种不同岩性储层的解释过程,强调了两种不同岩性储层数据分析的异同。使用Techlog(斯伦贝谢公司)软件处理和解释常规油气矿床(即中生代古巴碳酸盐岩地层和中新世泥质砂质沉积物)的数据。采用选定的方法逐步确定页岩体积、总孔隙度和有效孔隙度、水/烃饱和度(Quanti),并对测井曲线进行综合解释(Quanti Elan)。碳酸盐岩和硅屑地层的简要特征表明,以确定岩石物性为导向的解释方法在很大程度上取决于储层的类型。在阿尔奇方程中建立了识别原生矿物成分、确定m指数和地层水电阻率的交叉图。根据累积烃柱法计算了碳酸盐岩储层的有效层段。最后,将测井解释结果转化为连续的矿物组成曲线,包括泥质、孔隙度和含烃饱和度。这些结论包括对碳酸盐岩和硅质储层测井曲线进行有效综合解释的建议。
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Results of the comprehensive interpretation of well logs in carbonate and siliciclastic rocks – similarities and differences in the case studies of selected formations
This paper was made using geological and well logging data from the Cuban oilfield area and the Polish Carpathian Foredeep gas deposit to compare the interpretation process and underline similarities and differences between data analysis from two reservoir rocks of different lithology. Data from conventional hydrocarbon deposits, i.e. the Mesozoic Cuban carbonate formation and Miocene shaly-sandy sediments were processed and interpreted using Techlog (Schlumberger Co.) software. Selected approaches were used to determine the step by step volume of shale, total and effective porosity, water/hydrocarbon saturation (Quanti) and for the comprehensive interpretation of well logs (Quanti Elan). Brief characteristics of the carbonate and siliciclastic formations were presented to indicate that the interpretation methodology oriented to the determination of petrophysical properties depends strongly on the type of reservoir. Cross-plots were presented for primary mineral composition recognition, determination of m exponent and resistivity of formation water in the Archie equation. Effective intervals for the carbonate reservoir were calculated according to the Cumulative Hydrocarbon Column methodology. Finally, the results of the interpretation of well logs were presented as continuous curves of mineral composition, including shaliness, porosity and hydrocarbon saturation. The conclusions included recommendations for the effective comprehensive interpretation of well logs in the carbonate and siliciclastic reservoirs.
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