...
首页> 外文期刊>Journal of CO2 Utilization >CO2 enhanced flow characteristics of naturally-fractured bituminous coals with N-2 injection at different reservoir depths
【24h】

CO2 enhanced flow characteristics of naturally-fractured bituminous coals with N-2 injection at different reservoir depths

机译:CO2在不同储层深度下具有N-2注射的天然裂缝烟煤的流动特性

获取原文
获取原文并翻译 | 示例
           

摘要

Coal matrix swelling caused by the adsorption of CO2 during the CO2-ECBM process is the major reason for the decline of coal permeability and CO2 injectivity. Measures to recover this permeability reduction are of significant importance for the field projects. Many studies to date have established the responses of the coal matrix upon the adsorption of CO2 under various laboratory conditions, and some have revealed that the injection of N-2 into swelled coal can recover coal permeability to some extent. This study therefore examines the effect of various N-2 saturation durations on the permeability alteration of the swelled coals subjected to the adsorption of sub-and super-critical CO2 at different reservoir depths. A series of permeability tests was performed on a triaxial test rig, and the results show that high adsorption of super-critical CO2 in coal produces greater permeability reduction; the average CO2 permeability recovery rates are 25.08% and 37.31% for 6 MPa and 14 MPa N-2 saturation, respectively, as the higher N-2 permeating pressure favours greater permeability recovery; longer N-2 saturation duration also produces higher permeability recovery, but the permeability recovery process eases with the saturation duration; coal permeability is very susceptible to the poro-elastic effect in high confining environments and the effect of matrix responses on the interaction with gas sorption is therefore negligible.
机译:CO2-ECBM过程中二氧化碳吸附引起的煤基质肿胀是煤渗透性和二氧化碳注射率下降的主要原因。恢复这种渗透性降低的措施对现场项目具有重要意义。许多迄今为止在各种实验室条件下吸附二氧化碳时的研究已经建立了煤基质的反应,有些人揭示了将N-2注射到膨胀的煤中可以在一定程度上回收煤渗透性。因此,该研究检查了各种N-2饱和持续时间对在不同储层深度的散裂煤的膨胀煤的渗透性变化的影响。在三轴试验台上进行一系列渗透性试验,结果表明,煤中超关键二氧化碳的高吸附产生更大的渗透性降低;由于较高的N-2渗透压力,平均二氧化碳渗透率恢复率分别为25.08%和37.31%,因为较高的N-2渗透压力有利于更高的渗透性恢复;较长的N-2饱和持续时间也产生较高的渗透性恢复,但渗透性恢复过程随着饱和持续时间而加宽;煤渗透性非常易于在高限制环境中的孔弹性效果,并且基质反应对气体吸附的相互作用的影响是可忽略不计的。

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