首页> 外文会议>SPWLA annual logging symposium;Society of Petrophysicists and Well Log Analysts, inc >New Nuclear Magnetic Resonance Log T2 Cut-off Interpret Parameters for the Unconventional Tight Oil of the Bakken Petroleum System Using 2-D NMR Core Laboratory Measurements on Native State and Post-Cleaned Core Samples
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New Nuclear Magnetic Resonance Log T2 Cut-off Interpret Parameters for the Unconventional Tight Oil of the Bakken Petroleum System Using 2-D NMR Core Laboratory Measurements on Native State and Post-Cleaned Core Samples

机译:Bakken石油系统非常规致密油的新核磁共振测井T2截止解释参数,使用2-D NMR岩心实验室对原始状态和清洗后的岩心样品进行测量

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Operators have embraced the use of nuclear magnetic resonance (NMR) well-logging measurements to evaluate the hydrocarbon-producing potential of unconventional reservoirs such as the tight-oil Bakken Petroleum System (BPS) in North Dakota. With the use of NMR logging in these reservoirs, the widespread use of conventional NMR T2 interpretation parameters has been incorporated into the analysis. Typical T2 cutoff interpretation parameters in use are ≤ 3 ms clay bound water, 3 to 33 ms for capillarity-bound fluids, and >33 ms for free fluids, which is the traditional value used for carbonate reservoirs. While it appeared that these conventional parameters gave a satisfactory interpretation on NMR logging data, a set of laboratory NMR core measurements has led to a re-evaluation of the T2 cutoff parameters of NMR data traditionally used for the BPS.The set of NMR laboratory data came from a comparative study among three commercial core laboratories on core saturation measurement techniques made on samples from the BPS. One part of the study was to confirm that core plugs from the Middle Bakken/Three Forks section of the BPS cleaned using the Dean-Stark core-cleaning protocols established in the API RP-40 standards, did not completely clean all fluids from these core samples.To confirm this assumption, the laboratories made native state 2D NMR measurements on core plugs before the plugs were subjected to a Dean-Stark cleaning process. The measurements were repeated at the end of the completed cleaning process to evaluate the presence of any remaining fluids left in the core plug. Examination of the NMR data sets confirmed the incomplete cleaning assumptions. NMR core samples which were measured post-cleaned, revealed water, oil, and bitumen remained in the cleaned core plugs. After extensive study of the dataset it became apparent that the traditional T2 interpretation parameter cutoffs were incorrect, and thus yielded incorrect saturation values on the core and log data. The data revealed that NMR T2 cutoff for free fluids ranged between 0.7 and 1.0 ms, and not the traditional 33-ms value. Secondly, the dataset suggested that the clays in the core sample were likely oil-wet and that clay-bound water T2 cutoff component was ≤0.4 ms. The capillary-bound water portion was observed between the clay-bound T2 cutoff and the free-water T2 cutoff value. The data also seemed to indicate the possibility of dual wettability for reservoir samples.Lastly, this work identified the need to make hydrogen index corrections on both NMR core and log porosity measurements. These corrections allow the appropriate computation of formation waters volume due to the hyper salinity that exists in the BPS (300,000 to 400,000 ppm NaCl). These corrections are not typically applied to NMR logging or core data in the BPS.This work has identified new NMR T2 cutoffs parameters that give more accurate formation saturation analysis and indicate methods for correcting the measurement for salinity that needs to be applied to NMR logs and core data to achieve more accurate results.
机译:运营商已经接受了使用核磁共振(NMR)测井技术来评估非常规油藏的产烃潜力,例如北达科他州的致密油Bakken石油系统(BPS)。通过在这些储层中使用NMR测井,已将常规NMR T2解释参数的广泛使用纳入了分析。使用的典型T2临界解释参数为:黏土约束水≤3 ms,毛细约束流体为3到33 ms,游离流体为> 33 ms,这是碳酸盐岩储层的传统值。尽管这些常规参数似乎可以令人满意地解释NMR测井数据,但一组实验室NMR岩心测量结果导致对BPS常规使用的NMR数据的T2截止参数进行了重新评估。 一组NMR实验室数据来自三个商业核心实验室之间的比较研究,该实验室研究了BPS样品上的岩心饱和度测量技术。研究的一部分是确认使用API​​ RP-40标准中建立的Dean-Stark芯清洗协议清洗的BPS中巴肯/三叉部分的芯塞并未完全清洗掉这些芯中的所有流体样品。 为了确认这一假设,实验室在对芯棒进行Dean-Stark清洁工艺之前,对芯棒进行了原始状态的2D NMR测量。在完成清洁过程结束时重复进行测量,以评估堆芯塞中是否残留有任何剩余流体。核磁共振数据集的检查证实了不完全清洗的假设。经过清洗后测量的NMR岩心样品显示,清洗后的岩心塞中残留有水,油和沥青。经过对数据集的深入研究,很明显,传统的T2解释参数截止值是不正确的,因此在岩心和测井数据上产生了不正确的饱和度值。数据显示,自由流体的NMR T2截止值介于0.7到1.0毫秒之间,而不是传统的33毫秒值。其次,数据集表明岩心样品中的粘土可能是油湿的,而与粘土结合的水的T2截止成分≤0.4ms。在黏土结合的T2临界值和自由水的T2临界值之间观察到毛细管结合的水部分。数据似乎也表明储层样品具有双重润湿性的可能性。 最后,这项工作确定了需要对NMR岩心和对数孔隙率测量值进行氢指数校正。由于BPS中存在高盐度(300,000至400,000 ppm NaCl),因此这些校正可以对地层水量进行适当的计算。这些校正通常不适用于BPS中的NMR测井或岩心数据。 这项工作已经确定了新的NMR T2临界参数,这些参数可以提供更准确的地层饱和度分析,并指出了需要对NMR测井和岩心数据应用的盐度测量校正方法,以获得更准确的结果。

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