Evolution of a microfracture network induced by hydrocarbon generation during experimental maturation of organic-rich lacustrine shale
作者:Deyong Shao, Tongwei Zhang, K.L. Milliken, Shixin Zhou, Jing Li, Yanfang Li, Qin Zhou · 发表于:Geology · 年份:2025 · DOI:10.1130/g53458.1 · 被引用次数:10 · 研究领域:Hydrocarbon exploration and reservoir analysis、Methane Hydrates and Related Phenomena、Hydraulic Fracturing and Reservoir Analysis
Abstract Microfracture and matrix-pore networks evolve within organic-rich shales in response to thermal maturation. Here, we report observations on the Triassic Chang 7 Member black shale (total organic carbon = 26.8 wt%; Ordos Basin in China) at varying stages of thermal maturation induced by miniature-core-plug gold-tube pyrolysis. Observations via scanning electron microscope and X-ray computed microtomography reveal that microfractures in the highly organic-rich shale are well developed throughout the entire oil-generation window; however, matrix pores are relatively underdeveloped. An abundance of bedding-parallel microfractures and especially lens-shaped microfractures are newly formed at EasyRo = 0.71%–0.91% (EasyRo—equivalent to vitrinite reflectance), whereas bedding-perpendicular microfractures appear only at EasyRo ≥1.14%, both as a consequence of fluid overpressure and mechanical disequilibrium compaction. Compaction is further recorded by morphological variation of Chrysophyceae cyst fossils in the shale upon thermal maturation. The microfracture geometries and abundant oil droplets trapped within the microfractures indicate these open microfractures may potentially serve as oil retention and storage space underground. The later development of bedding-perpendicular microfractures that cut across the bedding-parallel microfractures creates an interconnected three-dimensional fracture network and, therefore, facilitates significant hydrocarbon (HC) expulsion and/o...