...
首页> 外文期刊>Journal of natural gas science and engineering >Electrical properties of Longmaxi organic-rich shale and its potential applications to shale gas exploration and exploitation
【24h】

Electrical properties of Longmaxi organic-rich shale and its potential applications to shale gas exploration and exploitation

机译:龙马溪富有机页岩的电学性质及其在页岩气勘探开发中的潜在应用

获取原文
获取原文并翻译 | 示例
           

摘要

This paper mainly discussed the experimental relationships between electrical properties and geological parameters such as brittle mineral content, total organic carbon (TOC) content and microscopic pore structure, with examples from Longmaxi organic shale in Sichuan province of China. With results derived from X-ray diffraction, organic geochemical measurements, nitrogen adsorption method and tests of rock electrical parameters, we came to the conclusions as follows: (1) Shale samples dominated by organic pores have the lowest resistivity, medium resistivity was found in samples mainly containing intra-particle pores and intergranular pores, and intercrystal pore dominated samples have the highest resistivity. (2) Brittle mineral content has positive correlation with rock's resistivity, as well as porosity and connectivity of intergranular pores. Low brittle mineral content suppresses electric double layers where ions exchange with clay minerals, ultimately resulting in increasing rock resistivity and decreasing rock polarizability. (3) High TOC content (>3%) is the most critical factor contributing to low organic shale resistivity, as increasing TOC content improves pore structure and reduces resistivity. The isomorphic substitution of the organic matter also serves to enhance shale conductivity and polarization. (4) Pyrite content has negative correlation with resistivity, while positive correlation with polarizability. Our study thus provides a series of basic parameters for shale gas exploration and exploitation, and discusses the geological features of significance for shale gas development in the Longmaxi Formation of this area. This is achieved by the determination of rock electrical parameters, which can be used to judge organic carbon and brittle mineral content to delineate shale areas as 'brittle shale sweet spots'. In addition, in the process of monitoring hydrofracturing, the electrical characteristics of the low resistivity anomaly correspond to the possible existence of a fracture or fracture zone, which could provide more reliable geological structure information for the later exploitation of shale gas. (C) 2016 Published by Elsevier B.V.
机译:本文主要讨论了电学性质与地质参数(如脆性矿物含量,总有机碳(TOC)含量和微观孔隙结构)之间的实验关系,并以中国四川龙马溪有机页岩为例。通过X射线衍射,有机地球化学测量,氮吸附方法以及岩石电参数测试得出的结论为:(1)以有机孔为主的页岩样品电阻率最低,中等电阻率。主要包含颗粒内孔和晶间孔的样品,以晶间孔为主的样品具有最高的电阻率。 (2)脆性矿物含量与岩石的电阻率,孔隙度和晶间孔隙的连通性呈正相关。低的脆性矿物含量会抑制电双层,在该双层中离子与粘土矿物交换,最终导致岩石电阻率增加和岩石极化率降低。 (3)高TOC含量(> 3%)是导致有机页岩电阻率低的最关键因素,因为增加TOC含量会改善孔隙结构并降低电阻率。有机物的同晶取代也可增强页岩电导率和极化作用。 (4)黄铁矿含量与电阻率呈负相关,而与极化率呈正相关。因此,我们的研究为页岩气的勘探和开发提供了一系列基本参数,并讨论了对该地区龙马溪组页岩气开发具有重要意义的地质特征。这是通过确定岩石电参数来实现的,岩石电参数可用于判断有机碳和脆性矿物含量,从而将页岩区域划定为“脆性页岩最佳点”。此外,在监测水力压裂过程中,低电阻率异常的电学特征对应于裂缝或裂缝带的可能存在,这可以为以后页岩气的开采提供更可靠的地质构造信息。 (C)2016由Elsevier B.V.发布

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