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首页> 外文期刊>Journal of Petroleum Science & Engineering >Assessing mechanical properties of organic matter in shales: Results from coupled nanoindentation/SEM-EDX and micromechanical modeling
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Assessing mechanical properties of organic matter in shales: Results from coupled nanoindentation/SEM-EDX and micromechanical modeling

机译:评估SHALES有机物的机械性能:耦合纳米压延/ SEM EDX和微机械建模的结果

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摘要

Mechanical properties of organic matter in fine grained source rocks has been the subject of extensive research. Most studies on kerogen have been performed on kerogen samples isolated by dissolving the rock matrix. However, recent studies have shown significant microstructural alteration of kerogen samples after demineralization leading to alteration of their mechanical properties. In this work, in order to study the role of organic matter on mechanical properties of the rock, both organic-rich and organicfree carbonate-rich shale rocks are investigated. A recently developed nano-chemomechanical characterization method is used to directly correlate mechanical properties of both organic-rich and organic-free samples with their chemical composition and mineralogy at micrometer length scales using coupled nanoindentation and Energy Dispersive X-ray Spectroscopy (EDX) technique. The experimental results are used in multiscale structure thought models in which the role of organic matter is modeled as a matrix surrounding inclusions in the composite. Application of these models to the interpretation of nanoindentation results allows us to obtain consistent mechanical properties for the main constituents of these samples, i.e. organic matter and calcite, which are in excellent agreement with the results in the literature. Moreover, adequate agreement is observed between model predictions and experimental measurements of elastic properties of carbonate-rich shale rocks at macroscale.
机译:细粒源岩石中有机物质的机械性能是广泛研究的主题。通过溶解岩石基质,已经对Cherogen进行了大多数关于基因的研究。然而,最近的研究表明脱矿质化后显着的显着的显微结构改变,导致其力学性能改变。在这项工作中,为了研究有机质对岩石力学性能的作用,研究了有机富含的有机物和有机无有机碳酸酯的页岩岩石。最近开发的纳米化学力学表征方法用于使用偶联纳米狭窄和能量分散X射线光谱(EDX)技术将其在微米长度和矿物学中与其化学成分和矿物学的机械性能直接相关。实验结果用于多尺度结构思想模型,其中有机物质的作用被建模为复合材料中周围夹杂物的基质。将这些模型应用于纳米茚调结果的解释使我们能够获得这些样品的主要成分的一致性机械性能,即有机物质和方解石,这与文献中的结果非常吻合。此外,在Macroscale在宏观岩石岩石岩石弹性性能的模型预测和实验测量之间观察到足够的协议。

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