首页> 外文期刊>Journal of Petroleum Science & Engineering >Diagenetic evolution of deep sandstones and multiple-stage oil entrapment: A case study from the Lower Jurassic Sangonghe Formation in the Fukang Sag, central Junggar Basin (NW China)
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Diagenetic evolution of deep sandstones and multiple-stage oil entrapment: A case study from the Lower Jurassic Sangonghe Formation in the Fukang Sag, central Junggar Basin (NW China)

机译:深砂岩和多阶段油包装的成岩演进 - 以佛龙落下的佛罗士州唐龙河地层较低的案例研究(NW中国)

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摘要

The deposition and preservation of high-quality rocks in a heterogeneous petroleum reservoir and associated mechanisms for hydrocarbon emplacement and migration are one of the most critical issues in deep exploration. Applying an integrated approach of petrography, SEM, stable carbon and oxygen isotopes, and fluid inclusion analyses, this study was designed to examine the relationship between diagenetic evolution and oil emplacement in the Lower Jurassic Sangonghe Formation in the Fukang Sag, central Junggar Basin (NW China). The sandstones consist mainly of feldspathic litharenite, and litharenite. Primary sandstone texture and compositions (grain size, ductile lithic sand grains) determine reservoir diagenetic heterogeneity. Grain size controls the overall abundances of cement and porosity, and reservoir properties through its effect on ductile lithic grains and hence on mechanical compaction. Ductile lithic-rich, very fine- to fine-grained sandstones had a limited diagenetic process in which compaction of easily deformed, clay-rich lithic grains predominated, resulting in a very rapid loss of porosity during burial. They achieved a high capillary entry pressure before the first oil arrival and were not charged later. In contrast, diagenetic events in the relatively coarser-grained sandstones with less abundant ductile lithic grains included dissolution and cementation as well as ductile compaction. Diagenesis progressed alternately with oil emplacement and in some cases, they occurred synchronously. Late diagenetic Fe-calcite, ankerite, and barite may be good mineralogical signatures of oil charge and migration. The nonreservoir, ductile lithic-rich, tightly compacted sandstones can constitute impermeable barrier interbeds embedded in permeable reservoir rocks, probably resulting in heterogeneous flow.
机译:在异质石油储层中的高质量岩石的沉积和保存以及碳氢化合物施加和迁移的相关机制是深度勘探中最关键的问题之一。本研究旨在应用岩体,SEM,稳定碳和氧同位素的综合方法,旨在探讨朱杰盆地福康凹陷下侏罗世僧孔河组(NW)中侏型僧孔河中较低的侏罗纪中井山施工之间的关系(NW)中国)。砂岩主要由长期性石英和石英组成。原发性砂岩纹理和组合物(晶粒尺寸,延性岩岩晶粒)确定储层成岩异质性。晶粒尺寸通过其对韧性岩性晶粒的影响控制水泥和孔隙率的总体丰富,以及储层性质。韧性岩性,非常精细的砂质砂岩具有有限的成岩工艺,其中易于变形的压实,富含粘土的岩石晶粒,导致埋葬期间的孔隙率很快。它们在第一次油到达之前实现了高毛细管进入压力,并未在以后收取。相反,具有较少丰富的延性岩性晶粒的相对较粗糙的砂岩中的成岩事件包括溶解和胶结以及延展性压实。成岩作用与油施加和在某些情况下交替进行,它们同步发生。晚期成岩配铌铁矿石,Ankerite和重晶石可能是良好的矿物学签名的矿物质签名和迁移。 Nonreservoir,韧性岩性富有的紧凑型砂岩可以构成嵌入渗透储层岩石中的不透水障碍物,可能导致异质流动。

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  • 作者单位

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Petr Resources Res 19 Beitucheng Western Rd Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Petr Resources Res 19 Beitucheng Western Rd Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Petr Resources Res 19 Beitucheng Western Rd Beijing 100029 Peoples R China;

    Shengli Oilfield Co SINOPEC Inst Western Frontier Area Dongying 257000 Peoples R China;

    Shengli Oilfield Co SINOPEC Inst Western Frontier Area Dongying 257000 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Petr Resources Res 19 Beitucheng Western Rd Beijing 100029 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

    Diagenesis; Oil charge; Heterogeneity; Sandstone reservoirs; Deep petroleum;

    机译:成岩作用;油充电;异质性;砂岩储层;深石油;

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