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Direct TOC Quantification in unconventional Kerogen-rich Shale Resource Play from Elemental Spectroscopy Measurements:A Case Study from North Kuwait

机译:来自元素光谱测量的非传统Kerogen-Reples资源中的直接TOC定量:北科威特的案例研究

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The deep organic-rich calcareous Kerogen of North Kuwait,a continuous 50ft thinly alternating carbonate –organic-rich argillaceous sequence,is not only a source rock but has gained importance as potential reservoirs themselves of typical unconventional category.Resource play or Kerogen characterization relies on quantifying total organic carbon(TOC)and estimating accurate mineralogy.This paper describes the first attempt to directly measure total organic carbon of the Limestone-Kerogen sequence. For the present study,empirical estimations of TOC have been carried out based on conventional log measurements and nuclear magnetic resonance(NMR).The introduction of a new neutron-induced capture and inelastic gamma ray spectroscopy tool using a very high-resolution scintillator and a new type of pulsed neutron generator for the deep unconventional kerogen resources have provided a unique opportunity to measure a stand-alone quantitative TOC value using a combination of capture and inelastic gamma ray spectra.In this process,Inorganic Carbon Content(ICC)is estimated by using elemental concentrations measured by this logging tool in addition to measuring Total Carbon,and this value is subtracted from the measured total carbon to give TOC. The advanced elemental spectroscopy tool measurements were first used to determine accurately the complex mineralogy of the layered carbonate and organic-rich shale sequence.Extensive laboratory measurements of core/cuttings data were used to calibrate the petrophysical evaluation and capture the heterogeneity seen on borehole image logs.The final analysis shows considerable improvements com- pared to conventional empirical estimation.Once the mineralogy is properly determined,the log-derived TOC matches very well with core measured TOC. This technique has provided a new direct and accurate log-derived TOC for Kerogen characterization. The application has a potential to be used for CAPEX optimization of the coring in future wells.This technique can also be applied in HPHT and High-angle horizontal wells,which can overcome challenging coring difficulties in horizontal wells.
机译:北科威特的深层有机化性钙质钙质,连续50英尺稀薄的碳酸盐 - 丰富的碳酸盐序列,不仅是源岩,而且作为潜在的储层本身获得了典型的非传统类别的重要性。资源播放或角化特征依赖于量化总有机碳(TOC)和估算精确的矿物学。本文描述了直接测量石灰石 - 基因序列总有机碳的第一次尝试。对于本研究,基于常规日志测量和核磁共振(NMR)进行了对TOC的经验估计。使用非常高分辨率的闪烁体和A引入新的中子诱导的捕获和非弹性伽马射线光谱工具用于深度非传统的Kerogen资源的新型脉冲中子发生器提供了使用捕获和无弹性伽马射线光谱的组合来测量独立的定量TOC值的独特机会。在该过程中,无机碳含量(ICC)估计除了测量总碳之外,使用该测井工具测量的元素浓度,并且从测量的总碳中减去该值以提供TOC。首先使用先进的元素光谱刀具测量来准确地确定分层碳酸盐和有机富含物流序列的复杂矿物学。核心/切割数据的扩张实验室测量用于校准岩石物理评估并捕获在钻孔图像原木上看到的异质性。最终分析显示了传统实证估计的相当大的改进。矿物学被正确确定,日志衍生的TOC与核心测量的核心匹配。该技术提供了一种新的直接和准确的Log-errived TOC,用于Kerogen表征。该应用程序具有未来井中取芯的CAPEX优化的潜力。该技术也可以应用于HPHT和高角度水平井中,这可以克服水平孔中的挑战性芯片困难。

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