首页> 外文期刊>Petroleum Geoscience >Genesis and role of bitumen in fracture development during early catagenesis
【24h】

Genesis and role of bitumen in fracture development during early catagenesis

机译:沥青在早期畸形裂缝发育中沥青中的成因及作用

获取原文
获取原文并翻译 | 示例
           

摘要

Bitumen-bearing fractures and vugs were investigated in the highly organic-rich Jordan oil shale (JOS) of Late Cretaceous-Eocene age, which has potential as a highly fractured, unconventional hydrocarbon play. Bitumen is present as macroscopically visible deposits, and as inclusions in the cement of abundant natural fractures and adjacent vugs. The frequency of bitumen occurrence in fractures closely correlates with total organic carbon (TOC) and burial depth. Petrographical and organic-geochemical analyses on bitumen samples extracted from fractures and their host-rock matrix show that the fracture-filling bitumen comprises indigenous low maturity hydrocarbons derived from the surrounding organic-rich oil shale and has not migrated from a deeper source. Maturity indicators imply that the oil shale is in the pre-oil generation stage of early catagenesis throughout the investigated area, but with a regional increase in thermal maturity from west to east as the result of greater maximum burial depth. Bitumen mobilization in the host rock was mainly controlled by vertical loading stress acting on the non-Newtonian bitumen phase in load-bearing configurations in the organic-rich matrix. Bitumen fractures were developed by hydraulic fracturing as the result of fluid overpressure in the organic matter. Overpressured bitumen has acted as a fracture driver, generating bitumen veins in both the organic-rich mudstones and the adjacent chert and silicified intervals.
机译:在高度有机丰富的富含性零年期 - 何时代的高度有机富有的约旦油页岩(JOS)中研究了沥青骨折和Vug,其具有高度骨折,非常规的碳氢化合物。沥青作为宏观可见的沉积物存在,并且在丰富的自然骨折和邻近的Vugs中存在夹杂物。骨折中沥青发生的频率与总有机碳(TOC)和埋深深度密切相关。从裂缝中提取的沥青样品及其宿主岩基质的岩化和有机地球化学分析表明,骨折填充沥青包括源自周围有机富含油页岩的土着低成熟度烃,尚未从更深的源迁移。成熟度指示剂暗示油页岩在整个研究区域的早期畸形的前发电阶段,但由于最大埋葬深度的结果,从西向东的热成熟度的区域增加。主体岩石中的沥青动员主要由垂直装载应力作用于非牛顿沥青相中的有机富含基质中的承载构型。由于有机物质中的流体过度压力,液压压裂开发了沥青骨折。过度压抑沥青充当了骨折驱动器,在有机丰富的泥岩和相邻的燧石和硅化间隔中产生沥青静脉。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号