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Identifying Hydrocarbon Zones in Unconventional Formations by Discerning Simpson’s Paradox

机译:通过辨别辛普森的悖论识别非传统形成中的烃地区

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This article is concerned with the identification of hydrocarbon zones in unconventional plays through lithofacies classification using wireline logs.Identification of hydrocarbon zones in unconventional formations is often different than in conventional formations.For example,in conventional reservoirs,the fractional volume of clay(Vclay)is generally correlated strongly and positively with gamma ray(GR);high GR values commonly indicate low hydrocarbon potential.In unconventional reservoirs,however,Vclay is often correlated weakly with GR,and sometime even negatively.There are several possible explanations for this change of correlation.In source-rock reservoirs,high GR often indicates high total organic carbon(TOC),kerogen,and gas or oil concentrations.In some tight-gas sandstone reservoirs,hydrocarbon-bearing sandstones have abnormally high GR. The change of the correlation between commonly used wireline logs in conventional formations to a different correlation between those same logs in unconventional formations is,in fact,a manifestation of the Simpson’s paradox—a counterintuitive phenomenon in probability and statistical data analysis.Here we show how to classify lithofacies and identify high-potential hydrocarbon zones in unconventional resources by discerning the Simpson’s paradox when analyzing relationships between wireline logs.We present examples from a tight-gas sandstone reservoir and a shale-gas reservoir.
机译:本文涉及通过使用有线模拟的锂外谱分类识别碳氢化合物区。使用有线形式的烃地区的烃地区通常与常规形成不同。例如,在常规储层中,粘土的分数体积(vclay)通常与伽马射线(GR)强烈且正相关;高GR值通常表示低烃潜力。然而,在非传统的储层中,VClay通常与GR弱弱,并且有时甚至是负面影响。这是对这种变化的几个可能的解释相关性。源岩储层,高GR常用于总有机碳(TOC),Kerogen和气体或油浓度。在一些紧的气体砂岩储层中,含碳氢化合物的砂岩具有异常高的GR。事实上,在传统地层中常用的线路日志与常规日志之间的不同关系的改变实际上是辛普森的悖论 - 概率和统计数据分析中的反向思考现象的表现。我们展示了如何通过在分析有线原木之间的关系时,通过辨别辛普森的悖论来分类锂外纳米和识别非传统资源中的高潜能碳氢化合物。

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