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Effects of Pore Pressure and Organic Contents on the Brittle-Ductile Transition in Shale Rock using Geophysical Method

机译:采用地球物理方法对孔隙压力和有机含量对页岩岩石脆性转变的影响

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The economic success of shale gas plays depends expansively on the brittle-ductile behavior of shale rock. The key parameter that separates the unconventional resources from conventional resources is the formation permeability, so all shale reservoirs need to be hydraulically fractured. Successful hydraulic fracturing requires targeting the most brittle rocks, therefore it is worthwhile to classify the shale in terms of brittle, less brittle, less ductile, and ductile zones. To identify the brittle-ductile transitional zone in shale reservoir, we have correlated the mineralogy-based brittleness index to elastic parameters estimated from well logs. The petrophysical model of the study area were plotted to break a story between brittle mineral contents, organic matter, brittleness indices and pore pressure to differentiate the brittle, ductile and transitional zones. Our results show that change in rock minerals distribution and brittleness index follow the trend in TOC, in less brittle to less ductile zone. In addition, we plotted the data in the crossplot of Young's modulus and Poisson's ratio and λ_ρ-μ_ρ lithology templates, noticed that shale with high quartz and high clay contents fall in less ductile to less brittle zone while shale with high quartz and low clay contents fall in less brittle to brittle zone. The overall observations of our study will support the previous research idea by suggesting the zone of brittle-ductile transition to design the hydraulic fracturing.
机译:页岩气球的经济成功依赖于页岩岩石的脆性韧性行为。将非传统资源与常规资源分开的关键参数是地层渗透性,因此所有页岩储层都需要液压破碎。成功的液压压裂需要瞄准最脆的岩石,因此值得将页岩分类为脆性,脆性,延性和延性区域。为了鉴定页岩储层中的脆性韧性过渡带,我们已经将基于矿物学的脆性指数与井数估计的弹性参数相关联。绘制了研究区域的岩石物理模型,以破坏脆性矿物质内容物,有机物,脆性指数和孔隙压力之间的故事,以区分脆性,延性和过渡区。我们的结果表明,岩石矿物分布和脆性指数的变化遵循TOC的趋势,在不太脆弱到较少的延展区。此外,我们绘制了杨氏模量和泊松比的交叉图中的数据和λ_ρ-μ_ρ的岩性模板,注意到具有高石英和高粘土内容物的页岩落入较少的脆性区域,而具有高石英和低粘土内容物的页岩落入脆弱区的脆弱区。我们研究的总体观察将通过暗示脆性韧性过渡区域设计液压压裂的区域来支持以前的研究理念。

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