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松辽盆地北部三肇凹陷升554断块特低渗油气储层流动单元研究

周路路, 刘俊刚, 舒广强, 刘志伟, 陈璋, 王双桃, 汤刚, 黎勤国. 2021. 松辽盆地北部三肇凹陷升554断块特低渗油气储层流动单元研究[J]. 中国地质, 48(3): 807-819. doi: 10.12029/gc20210311
引用本文: 周路路, 刘俊刚, 舒广强, 刘志伟, 陈璋, 王双桃, 汤刚, 黎勤国. 2021. 松辽盆地北部三肇凹陷升554断块特低渗油气储层流动单元研究[J]. 中国地质, 48(3): 807-819. doi: 10.12029/gc20210311
ZHOU Lulu, LIU Jungang, SHU Guangqiang, LIU Zhiwei, CHEN Zhang, WANG Shuangtao, TANG Gang, LI Qinguo. 2021. Research on flow units of ultra-low permeability oil-gas reservoirs in Sheng 554 fault block of Sanzhao depression, northern Songliao Basin[J]. Geology in China, 48(3): 807-819. doi: 10.12029/gc20210311
Citation: ZHOU Lulu, LIU Jungang, SHU Guangqiang, LIU Zhiwei, CHEN Zhang, WANG Shuangtao, TANG Gang, LI Qinguo. 2021. Research on flow units of ultra-low permeability oil-gas reservoirs in Sheng 554 fault block of Sanzhao depression, northern Songliao Basin[J]. Geology in China, 48(3): 807-819. doi: 10.12029/gc20210311

松辽盆地北部三肇凹陷升554断块特低渗油气储层流动单元研究

  • 基金项目:
    大庆榆树林油田开发有限责任公司《升22区块油藏描述及扩边潜力评价(油藏描述部分)》项目(2010D-5006-0101)资助
详细信息
    作者简介: 周路路, 男, 1988年生, 工程师, 主要从事矿产调查、地质调查工作; E-mail: lulu6681420@163.com
    通讯作者: 刘俊刚, 男, 1986年生, 工程师, 主要从事油气勘探开发工作; E-mail: ljgang01_cq@petrochina.com.cn
  • 中图分类号: P618.13

Research on flow units of ultra-low permeability oil-gas reservoirs in Sheng 554 fault block of Sanzhao depression, northern Songliao Basin

  • Fund Project: Funded by Daqing Yulin Oilfield Development Co., Ltd (No.2010D-5006-0101)
More Information
    Author Bio: ZHOU Lulu, male, born in 1988, engineer, engaged in mineral and geological investigation; E-mail: lulu6681420@163.com .
    Corresponding author: LIU Jungang, male, born in 1986, engineer, engaged in petroleum gas exploration and development; E-mail: ljgang01_cq@petrochina.com.cn
  • 油气储层流动单元在高、中、低渗储层表征中已经得到普遍应用,但在特低渗储层研究中仍然很少涉及。以松辽盆地北部三肇凹陷升554断块下白垩统泉头组四段扶余油层特低渗储层为例,划分出E、G、P三种流动单元类型,从E类至P类流动单元,渗流能力逐渐减小。流动单元物性特征、空间分布特征均表明流动单元储层非均质性较强。分析了沉积相及开启型正断层对流动单元发育的控制作用。研究发现,在特低渗储层尺度内,流动单元自身的渗流能力对油藏开发的作用已经很小,而不同流动单元之间的渗流能力差异引起油藏开发效果的不同也已不明显,开发效果主要取决于砂体射开厚度、注水效果等开发因素以及断层渗流通道、泥岩渗流屏障、砂体厚度等地质因素。这与以往储层流动单元研究中普遍认为的“流动单元渗流能力越强,油藏注水开发效果越好”的观点是截然不同的。通过本文以期为特低渗油气储层流动单元研究提供一定借鉴,为特低渗油藏开发提供一定参考依据。

  • 加载中
  • 图 1  研究区区域构造位置图

    Figure 1. 

    图 2  扶余油层渗流屏障与连通体识别剖面示意图

    Figure 2. 

    图 3  扶余油层Φ-AC拟合交汇图(a)和K-Φ拟合交汇图(b)

    Figure 3. 

    图 4  扶余油层储层流动单元类型划分图

    Figure 4. 

    图 5  扶余油层主力层流动单元分布和油藏分布平面图

    Figure 5. 

    图 6  扶余油层主力层流动单元分布和油藏分布剖面图

    Figure 6. 

    图 7  扶余油层主力层沉积微相平面分布图

    Figure 7. 

    图 8  扶余油层断层控制流动单元发育模式图

    Figure 8. 

    图 9  扶余油层主力层FZI值累计概率百分数图

    Figure 9. 

    图 10  扶余油层FⅠ5小层油井生产柱状图

    Figure 10. 

    图 11  扶余油层FⅠ7小层油井生产柱状图

    Figure 11. 

    表 1  扶余油层流动单元属性参数表

    Table 1.  Attribute parametere of flow units of Fuyu oil layers

    下载: 导出CSV
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出版历程
收稿日期:  2019-05-19
修回日期:  2019-08-26
刊出日期:  2021-06-25

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