首页> 外文期刊>Oil & gas science and technology >From Injectivity to Integrity Studies of CO2 Geological Storage - Chemical Alteration Effects on Carbonates Petrophysical and Geomechanical Properties
【24h】

From Injectivity to Integrity Studies of CO2 Geological Storage - Chemical Alteration Effects on Carbonates Petrophysical and Geomechanical Properties

机译:从注入性到完整性研究CO2地质储量-化学蚀变作用对碳酸盐岩岩石物理和地质力学特性的影响

获取原文
           

摘要

The technical and economical success of a CO2 geological storage project requires the preservation of the site injectivity and integrity properties over its lifetime. Unlike conventional hydrocarbon gas injection, CO2 injection implies geochemical reactions between the reactive brine and the in situ formations (reservoir and cap rock) leading to modifications of their petrophysical and geomechanical properties. This paper underlines the experimental difficulties raised by the low permeability of samples representative either of the cap rock itself or at least of transition zones between the reservoir and the effective cap rock. Acidification effects induced by CO2 injection have been studied using an experimental procedure of chemical alteration, which ensures a homogeneous dissolution pattern throughout the rock sample and especially avoids any wormholing process that would lead to erroneous measurements at the core scale. Porosity, permeability and geomechanical properties of outcrop and field carbonate samples of various permeability levels have been measured under their native state and different levels of alteration. The present work has been conducted within the framework of ANR GeoCarbone-INJECTIVITY and GeoCarbone-INTEGRITY projects. Each experimental step: chemical alteration, petrophysical measurements and geomechanical testing, is considered from the point of view of injectivity and integrity issues. The obtained experimental data show clear trends of chemically induced mechanical weakening.
机译:CO2地质封存项目的技术和经济成功需要在其生命周期内保留现场的注入性和完整性。与常规的烃类气体注入不同,CO2注入意味着反应性盐水与原地层(储层和盖层岩)之间的地球化学反应,从而导致其岩石物理和地球力学特性发生变化。本文强调了代表岩层本身或至少在储层与有效岩层之间的过渡带的低渗透率样品所带来的实验困难。已经使用化学改变的实验程序研究了由二氧化碳注入引起的酸化作用,该过程可确保整个岩石样品具有均一的溶解模式,尤其是避免了任何会导致岩心尺度测量错误的虫蛀过程。在自然状态和不同蚀变水平下,已测量了各种渗透率水平的露头和田间碳酸盐岩样品的孔隙度,渗透率和地质力学性质。目前的工作是在ANR GeoCarbone-INJECTIVITY和GeoCarbone-INTEGRITY项目的框架内进行的。从注入性和完整性问题的角度考虑了每个实验步骤:化学蚀变,岩石物理测量和地质力学测试。获得的实验数据表明化学诱导的机械减弱的明显趋势。

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