首页> 外文会议>Society of Petrophysicists and Well Log Analysts, Inc.;SPWLA Annual Logging Symposium >SATURATION EXPONENT AS A FUNCTION OF RESERVOIR HETEROGENEITY AND WETTABILITY IN THE TAMBAREDJO OIL FIELD, SURINAME
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SATURATION EXPONENT AS A FUNCTION OF RESERVOIR HETEROGENEITY AND WETTABILITY IN THE TAMBAREDJO OIL FIELD, SURINAME

机译:饱和度指数作为储层异质性和臭虫的储层异质性和润湿性的函数,苏里南

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This research proposed an alternative method for determining the saturation exponent (n) by finding the best correlations for the heterogeneity index using available core data and considering wettability changes. The log curves of the variable n were estimated, and the effect on the water saturation (Sw) calculations and the Stock Tank Oil Initially In Place (STOIIP) in the Tambaredjo (TAM) oil field was analyzed.Core data were employed to obtain the relationship between n and heterogeneity using cross-plots against several heterogeneity indices, reservoir properties, and pore throat size. After filtering the data, the clay volume (Vcl), shale volume, silt volume, basic petrophysical property index (BPPI), net reservoir index, pore grain volume ratio, and rock texture were defined as the best matches. Their modified/improved equations were applied to the log data and evaluated. The n related to Vcl was the best selection based on the criteria of depth variations and logical responses to the lithology.The Sw model in this field showed certain log readings (high resistivity [Rt] reading ≥ 500 ohm.m) that infer these intervals to be probable inverse-wet (oil-wet). The cross-plots (Rt vs. Vcl; Rt vs. density [RHOB]; Rt vs. total porosity [PHIT]) were used to discard the lithologies related to a high Rt (e.g., lignites and calcareous rocks) and to correct Sw when these resulted in values below the estimated irreducible water saturation (Swir).The Sw calculations using the Indonesian equation were updated to incorporate n as a variable (log curves), comparing it with Sw from the core data and previous calculations using a fixed average value (n = 1.82) from the core data. An integrated approach was used to determine n, which is related to the reservoir’s heterogeneity and wettability changes. The values of n for high Rt (n > 2) intervals ranged from 2.3 to 8.5, which is not close to the field average n value (1.82). Specific correlations were found by discriminating Swir (Swir < 15%), (Swir 15%–19%), and Swir (> 19%). The results showed that using n as a variable parameter improved Sw from 39.5% to 36.5% average in the T_1 and T_2 sands, showing a better fit than the core data average and increasing the STOIIP estimations by 6.81%. This represents now a primary oil recovery of 12.1%, closer to the expected value for these reservoirs.Although many studies have been done on n determination and its effect on Sw calculations, using average values over a whole field is still a common practice regardless of heterogeneity and wettability considerations. This study proposed a method to include the formation of heterogeneity and wettability changes in n determination, allowing a more reliable Sw determination as demonstrated in the TAM oil field in Suriname.
机译:该研究提出了一种用于通过使用可用核心数据找到异质性指数的最佳相关性并考虑润湿性变化来确定饱和度指数(n)的替代方法。估计变量N的日志曲线,分析了对水饱和度(SW)计算的影响和最初在Tambaredjo(TAM)油田中的储备油(STOIIP)(STOIIP)。采用核心数据来获得N和异质性之间的关系,使用横向地对几个异质性指数,储层性能和孔喉部尺寸进行交叉。过滤数据后,粘土体积(VCL),页岩体积,淤泥体积,基本岩石物理指数(BPPI),净储存指数,孔隙粒度和岩石质地被定义为最佳匹配。它们的修改/改进方程被应用于日志数据并进行评估。与VCL相关的N相关是基于对岩性的深度变化和逻辑响应的标准的最佳选择。该字段中的SW模型显示了某些日志读数(高电阻率读数≥500欧姆),其推断出这些间隔是可能的逆湿(油湿)。交叉图(RT与VCL; RT与密度[rhOB]; RT与总孔隙率[PHIT])用于丢弃与高温RT(例如,褐煤和钙质岩石)相关的岩性,并纠正SW当这些导致低于估计的不可缩短的水饱和度(SWIR)的值。使用印度尼西亚方程式的SW计算被更新以将n作为变量(日志曲线),将其与来自核心数据的SW比较,并使用来自核心数据的固定平均值(n = 1.82)的先前计算。综合方法用于确定与储层的异质性和润湿性变化有关。高RT(n> 2)间隔的n值范围为2.3到8.5,不接近场平均n值(1.82)。通过鉴别SWIR(SWIR <15%),(SWIR 15%-19%)和SWIR(> 19%)来发现具体相关性。结果表明,在T_1和T_2砂体中使用N作为可变参数改进的SW从39.5%至36.5%的平均值,显示比核心数据平均值更好,并将STOIIP估计增加6.81%。这表现在是初级油回收率12.1%,更接近这些水库的预期价值。虽然已经在n个测定中进行了许多研究,但它对SW计算的影响,不管异质性和润湿性考虑如何,整个领域的平均值仍然是一种常见的做法。该研究提出了一种方法,包括N次测定中的异质性和润湿性变化的形成,允许更可靠的SW测定,如苏里南的TAM油田中所示。

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