›› 2019, Vol. 40 ›› Issue (6): 1-1.doi: 10.7657/XJPG20190616

• 论文 •    

CT扫描在富泥储集层孔隙特征研究中的应用——以玛湖凹陷玛18井区为例

马聪1a,王剑1a,连丽霞1a,王屿涛1b,雷海艳1a,李维锋2   

  1. (1.中国石油 新疆油田分公司 a.实验检测研究院;b.勘探开发研究院,新疆 克拉玛依 834000;2.长江大学 地球科学学院,湖北 荆州 434000)
  • 出版日期:2019-12-01 发布日期:2019-12-01

Application of CT Scanning in Study on Pore Features of Mud-Rich Reservoir : A Case of Wellblock Ma-18 in Mahu Sag

MA Cong1a, WANG Jian1a, LIAN Lixia1a, WANG Yutao1b, LEI Haiyan1a, LI Weifeng2   

  1. (1.PetroChina Xinjiang Oilfield Company, a.Research Institute of Experiment and Detection; b.Research Institute of Exploration and Development, Karamay, Xinjiang 834000, China; 2.School of Geosciences, Yangtze University, Jingzhou, Hubei 434000, China)
  • Online:2019-12-01 Published:2019-12-01

摘要: 玛湖凹陷玛18井区多口井在百口泉组富泥储集层中试油获得高产,这与富泥段含油性差的传统认识相矛盾。为了探究富泥储集层收缩孔形成机理及其对储集层的影响,采用微米CT扫描实验技术和数字岩心计算方法对富泥储集层的三维孔隙结构开展研究,结果表明发育收缩孔的样品渗透率远高于不发育收缩孔的样品渗透率;采用原位电子探针技术对百口泉组泥质杂基的成分进行分析,结果表明高钾硅贫铁镁的泥质杂基在向云母类矿物转化过程中形成收缩孔;结合孔隙含量、孔隙度、渗透率和试油产量的多参数分析表明,收缩孔发育的富泥储集层段的孔隙度和渗透率并未因泥质含量增加而减小,反而呈现出增加的趋势;综合沉积相分析,玛18井区富泥储集层沉积环境为水下分流河道,广泛发育的收缩孔降低了泥质堵塞溶孔进而破坏储集层物性的程度。综合分析认为,高钾硅贫铁镁的泥质杂基在向云母类矿物转化时形成了收缩孔,收缩孔既扩充了岩石储集空间又沟通了其他类型的孔隙,进而改善富泥储集层的储渗能力,有利的沉积环境、优质的岩性和储集空间独特配置是富泥储集层成为优质储集层乃至获得高产的原因,其中,收缩孔的改造作用是关键因素。基于以上认识,利用测井图版识别出经过收缩孔改造的富泥储集层,试油效果良好,为玛湖地区挖潜增效提供了新的思路和方向。

Abstract: High oil production has been achieved from the mud-rich reservoir of Baikouquan formation in multiple wells of Wellblock Ma-18 of Mahu sag, which contradicts the traditional understanding of "poor oil-bearing property of mud-rich intervals". To study the formation mechanism of shrinkage pore in mud-rich reservoir and its influences on the reservoir, micron-CT scanning technology and digital core calculation method are used to study the 3D pore structures in mud-rich reservoirs and the results show that the permeabilities of rock samples with developed shrinkage pores are much higher than those of the samples with undeveloped shrinkage pores. In-situ electronic probe technology is used to analyze the components of mud matrix in Baikouquan formation and the results indicate that during the transformation of potassium- and silicon-rich, iron- and magnesium-poor mud matrix to mica minerals, shrinkage pores occurred. The analysis on pore content, porosity, permeability and formation test production show that the porosity and permeability of the mud-rich interval with developed shrinkage pores shows an increase trend. Combined with the sedimentary analysis, it is considered that the mud-rich reservoir in the Wellblock Ma-18 deposited in an underwater distributary channel. The comprehensive analysis shows that the shrinkage pores can not only expand reservoir spaces but connect with other types of pores, then to improve the storage capacity and permeability of the mud-rich reservoir. Favorable sedimentary environment, good lithology and unique configuration of reservoir spaces are the main reasons for the high quality mud-rich reservoir, and the shrinkage pore is the key factor. Based on the above understandings, good formation test results have been gained in the mud-rich reservoir identified by using logging chart, which provides a new idea and direction for potential tapping in the Mahu area

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