...
首页> 外文期刊>Journal of geophysics and engineering >Experimental and theoretical study of the electrical conductivity, NMR properties under different salinities and the membrane potential of shaly sandstone
【24h】

Experimental and theoretical study of the electrical conductivity, NMR properties under different salinities and the membrane potential of shaly sandstone

机译:不同盐度下电导率,NMR性能的实验与理论研究及Shaly砂岩的膜势

获取原文
获取原文并翻译 | 示例
           

摘要

Although the salinity of formation water determines a list of important petrophysica parameters in reservoir rocks, little work on the salinity effects on the bound water saturation and the consequent effects on the electrical and nuclear magnetic resonance (NMR) characteristics has been done. In this study, the measurements of the bound water saturation, electrical conductivity and NMR responses of rocks with different salinities have been conducted. The experimental results indicate that the bound water saturation of shaly sandstone decreases with an increase in the salinity. The electrical conductivity of rock with low salinity formation water may be high because of high bound water saturation and, additionally, clay content. The transverse relaxation time (T-2) spectrum distribution changes with the salinity of solution. The cutoff value of the T-2 decreases with the increase of the solution salinity. The property of membrane potential in shaly sands is critical in determining the resistivity of formation water (R-w) using a spontaneous potential (SP) log. In order to understand the influences of cation exchange capacity, hydrocarbon saturation and salinity on membrane potential, a systematical study on the membrane potential of oil-bearing shaly sands has been conducted based on electrochemical theory and the electrical conductivity properties of shaly sands. Laboratory experiments were designed and carried out. The experimental results show that the membrane potential of shaly sands increases with the increase of cation exchange capacity, the hydrocarbon saturation and the salinity difference of the solutions. The developed membrane theory in shaly sands should improve SP log interpretation. If using SP to predict R-w, we suggest that the influences of hydrocarbon saturation and shale content should be taken into account.
机译:尽管地层水的盐度决定了储层岩石中的重要植物性参数列表,但对所结合的水饱和度的盐度作用很少,因此已经完成了对电气和核磁共振(NMR)特性的影响。在该研究中,已经进行了用不同盐度的岩石的结合水饱和度,电导率和NMR响应的测量。实验结果表明,盐晶砂岩的结合水饱和度随着盐度的增加而降低。由于高含水饱和度,并且另外,粘土含量,具有低盐度形成水的岩石的电导率可能是高的。横向松弛时间(T-2)谱分布随溶液的盐度而变化。随着溶液盐度的增加,T-2的截止值降低。 Shaly Sands膜电位的性质对于使用自发电位(SP)原木确定地层水(R-W)的电阻率至关重要。为了了解阳离子交换能力,烃饱和度和盐度对膜电位的影响,基于电化学理论和谢根砂的电导率进行了对含油纹理砂膜膜电位的系统研究。设计并进行了实验室实验。实验结果表明,随着阳离子交换能力的增加,烃饱和度和溶液的盐度差异,Shaly Sands的膜电位增加。 Shaly Sands中发达的膜理论应该改善SP日志解释。如果使用SP预测R-W,则建议应考虑碳氢化合物饱和度和页岩含量的影响。

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