考虑成熟影响的富含有机质页岩新型岩石物理模型

GEOPHYSICS Pub Date : 2024-04-25 DOI:10.1190/geo2023-0612.1
Rui Yang, Huaizhen Chen
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引用次数: 0

摘要

地球化学参数,如成熟度和总有机碳 (TOC) 含量,在富含有机质的页岩的甜点预测和油气勘探中起着至关重要的作用。热成熟度会极大地影响固体有机物(OM)向碳氢化合物的转化以及微结构的演变,从而改变页岩的整体弹性特性。首先,我们介绍了如何利用测井数据估算成熟度、总有机碳含量和有机孔隙度。其次,与只考虑离散阶段的成熟度不同,我们建立了一种新的 RPM,其中连续的角质层成熟过程是关键的控制条件。此外,我们还提出了如何将每种孔隙度类型的体积比例校准为成熟度的函数。最后,我们应用 RPM 研究了甜点参数(热成熟度、总有机碳含量和脆性矿物含量)、超压和成岩作用如何影响页岩的整体弹性特性和各向异性。结果表明,利用所提出的 RPM,我们可以可靠地预测页岩层的声速,而且角质演化对页岩的弹性特性有明显的影响,尤其是在中高成熟度的湿气窗口阶段。我们的结论是,在富含有机质的页岩中勘探油气时,热成熟度是一个关键的甜点参数。
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A novel rock physics model of organic-rich shale considering maturation influence
Geochemical parameters, e.g. maturity, and total organic carbon (TOC) content, play a crucial role in the prediction of sweet spots and the exploration of oil and gas in organic-rich shales. Thermal maturity significantly affects the conversion of solid organic matter (OM) into hydrocarbons and the evolution of microstructures, thereby altering the overall elastic properties of shales. To clarify how the maturity affects shale property, we propose a novel Rock Physics Model (RPM) of organic-rich shale, in which we consider the continuous process of thermal maturity.#xD;Firstly, we present how to estimate maturity level, TOC content, and organic porosity using logging data. Secondly, different from only considering the discrete-stage maturity, we establish a novel RPM, in which a continuous kerogen maturation process serves as a key control condition. Furthermore, we propose how to calibrate the volumetric proportion of each porosity type as a function of maturation. Finally, we apply the RPM to investigate how sweet spot parameters (thermal maturity, TOC content, and brittle mineral content), overpressure and diagenesis affect the overall elastic properties and anisotropy of shale. Results demonstrate that using the proposed RPM we may predict acoustic velocity of shale formations reliably, and kerogen evolution has a noticeable impact on the elastic properties of shale rocks, particularly during the wet gas window stage of mid-to-high maturation. We conclude that thermal maturity emerges as a crucial sweet spot parameter in the case of exploration of oil and gas in organic-rich shales.
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