首页> 外文期刊>AAPG Bulletin >Simulation and characterization of pathway heterogeneity of secondary hydrocarbon migration
【24h】

Simulation and characterization of pathway heterogeneity of secondary hydrocarbon migration

机译:次生烃运移路径非均质性的模拟与表征

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Carriers are important links between sources and traps for hydrocarbon migration and accumulation in a petroleum system. Oil and gas commonly migrate along narrow and irregular pathways in porous media, even in macroscopically homogeneous media. A migration simulator based on the invasionpercolation theory, which couples the buoyancy of a hydrocarbon column as the driving force with capillary pressure as the resisting force, satisfactorily explains migration processes in heterogeneous media. In macroscopically homogeneous carriers, migration pathways are generally perpendicular to equipotential lines, but locally, the pathways can be irregular because of the influence of microscopic heterogeneity. The degree of irregularity of these pathways depends on the difference between competing driving and resisting forces. When numerous pathways form in a migration-accumulation system, the flux of migrating hydrocarbons may vary among these pathways. In macroscopically heterogeneous carriers, the irregularity of migration pathways is exacerbated. When die driving force is relatively weak, hydrocarbons tend to migrate in carriers where the hydraulic conductivity is relatively large. These pathways differ from those predicted only on the basis of flow potential. Simulation of the migration process in the Middle Jurassic carrier beds of the Paris Basin demonstrates the characteristics of the migration simulator in the analysis of migration pathway heterogeneity. Results are comparable to or superior to those achieved with previous simulation approaches.
机译:载体是石油系统中碳氢化合物迁移和聚集的源与圈闭之间的重要联系。油气通常在多孔介质中甚至在宏观上均匀的介质中,都沿着狭窄且不规则的路径迁移。基于入侵渗流理论的运移模拟器将烃柱的浮力作为驱动力与毛细管压力作为阻力相结合,可以令人满意地解释非均质介质中的运移过程。在宏观上均一的载体中,迁移路径通常垂直于等势线,但是在本地,由于微观异质性的影响,这些路径可能是不规则的。这些路径的不规则程度取决于竞争驱动力和抵抗力之间的差异。当在迁移-聚集系统中形成许多途径时,烃的迁移通量可能在这些途径之间变化。在宏观上异质的载体中,迁移途径的不规则性加剧。当驱动力相对较弱时,烃倾向于在水力传导率相对较大的载体中迁移。这些途径不同于仅基于流动潜力预测的途径。对巴黎盆地中侏罗世运载体床层的迁移过程进行模拟,证明了迁移模拟器在分析迁移途径异质性方面的特征。结果与以前的模拟方法所获得的结果相当或更好。

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