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Combined technology of PCP and nano-CT quantitative characterization of dense oil reservoir pore throat characteristics

机译:PCP和纳米CT致密储油孔喉淋淋孔特征的组合技术

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摘要

The size of pore throats in tight oil reservoirs varies from a few tens of nanometers to several hundred micrometers. This complex and diverse microscopic pore throat structure restricts the exploration and development process, affecting the recovery rate. Size, shape, and spatial distribution of pore throats in tight oil reservoirs are revealed in this paper via a scanning electron microscope (SEM), casting thin-sections, high-pressure mercury injection, and Nano-CT. Results show that the pore type of the Chang 7 tight oil reservoir in the Xin'anbian area is mainly divided into three categories: intergranular pores, dissolution pores, and microfractures. Numerous nanoscale pore throats have developed in this area, which greatly contributes to reservoir capacity and seepage. Pore throat distribution on capillary pressure curves of different samples shows that when the threshold pressure is less than 1 Mpa, there are many micron-sized pores with good connectivity and pore throats form a large tubular shape with a throat radius between 3.6 and 1064 nm. When the threshold pressure ranges from 1 to 3 MPa, there are many nanoscale pores with good local connectivity, intragranular dissolution pores develop, and pore throats are in tube bundles and spherical in shape with the throat radius between 3.6-657 nm. When the threshold pressure is greater than 3 MPa, nanoscale microfractures develop and are connected to neighboring small spherical pores, small spherical nanopore spaces become isolated, vertical connectivity is poor, and the throat radius is between 3.6-242 nm.
机译:紧密储油器中的孔喉部的大小不同于几十纳米到几百微米。这种复杂和不同的微观孔隙结构限制了勘探和开发过程,影响了回收率。本文通过扫描电子显微镜(SEM),铸造薄型,高压汞注入和纳米CT,在本文中揭示了孔隙液中孔液中孔喉部的尺寸,形状和空间分布。结果表明,新安界地区常7封闭油藏的孔隙型分为三类:骨髓孔隙,溶解毛孔和微磨损。在这一领域开发了许多纳米级孔喉,这有助于储层能力和渗漏。不同样品的毛细管压力曲线上的孔隙喉部分布表明,当阈值压力小于1MPa时,存在许多具有良好连接性的微米尺寸的孔隙,并且孔喉形成大的管状形状,喉部半径在3.6和1064nm之间。当阈值压力范围为1至3MPa时,存在许多具有良好局部连接的纳米级孔,腔内溶解孔发育,孔喉部是管束和球形的,喉部半径在3.6-657nm之间。当阈值压力大于3MPa时,纳米级微折磨发生并连接到相邻的小球孔,小球形纳米孔空间变得隔离,垂直连接差,喉部半径在3.6-242nm之间。

著录项

  • 来源
    《Arabian journal of geosciences》 |2019年第16期|共12页
  • 作者单位

    Northwestern Univ Dept Geol State Key Lab Continental Dynam Xian 710069 Shaanxi Peoples R China;

    Northwestern Univ Dept Geol State Key Lab Continental Dynam Xian 710069 Shaanxi Peoples R China;

    Petro China Changqing Oilfield Branch Co Oil Prod Factory 3 Yanan 716000 Shaanxi Peoples R China;

    Petro China Changqing Oilfield Branch Co Oil Prod Factory 6 Yanan 716000 Shaanxi Peoples R China;

    Petro China Changqing Oilfield Branch Co Oil Prod Factory 1 Yanan 716000 Shaanxi Peoples R China;

    Petro China Changqing Oilfield Branch Co Oil Prod Factory 1 Yanan 716000 Shaanxi Peoples R China;

    Changqing Oilfield Co Res Inst Explorat &

    Dev Xian 716000 Shaanxi Peoples R China;

    Petro China Changqing Oilfield Branch Co Oil Prod Factory 1 Yanan 716000 Shaanxi Peoples R China;

    Northwestern Univ Dept Geol State Key Lab Continental Dynam Xian 710069 Shaanxi Peoples R China;

    Northwestern Univ Dept Geol State Key Lab Continental Dynam Xian 710069 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

    Tight reservoir; Microscopic pore throat structure; Mercury injection; Nano-CT; Ordos Basin;

    机译:紧的水库;微观孔隙结构;汞注射;纳米CT;鄂尔多斯盆地;

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