首页> 外文会议>International Conference on Greenhouse Gas Technologies >Rewards and challenges of seismic monitoring for CO2 storage: a fluid substitution study in the Gippsland basin, Victoria, Australia
【24h】

Rewards and challenges of seismic monitoring for CO2 storage: a fluid substitution study in the Gippsland basin, Victoria, Australia

机译:CO2储存地震监测的奖励与挑战:澳大利亚维多利亚州Gippsland盆地的流体替代研究

获取原文

摘要

Seismic observation has key advantages that, in the right geological conditions, make it extremely valuable for CO2 storage monitoring. Among surface techniques allowing the observation of the entire storage complex, it has by far the greatest vertical and lateral resolution and it can provide a full 3D view of the reservoir and overburden. However, in our experience, theoretical applicability of seismic acquisition for CO2 plume tracking has often been challenged by the geology: high rock stiffness, heterogeneity, large depths, or low porosity in a storage site are not favorable factors. Moreover, there is uncertainty on the minimum levels of detectability. CO2 might mix either homogeneously or create patches of variable saturation, and this can result in a large variability on the expected seismic signal, especially for saturations lower than 50%. We investigate the seismic signal expected for a location in the Gippsland Basin, Victoria, Australia. Using classical rock physics equations, CO2 detectability at the reservoir level will present some challenges, but the possibility for detection above the reservoir is quite favorable. An understanding of the relative heterogeneity of storage formations is critical to establishing uncertainty and detection limits of time-lapse seismic technology.
机译:地震观察具有关键优势,在正确的地质条件下,使其对二氧化碳储存监测非常有价值。在允许观察整个存储复合物的表面技术中,它具有迄今为止最大的垂直和横向分辨率,并且它可以提供储存器和覆盖层的完整3D视图。然而,在我们的经验中,对CO2羽状跟踪的地震采集的理论适用性经常被地质挑战:高岩石刚度,异质性,大深度或储存部位中的低孔隙率是不利的因素。此外,对最小可检测性水平存在不确定性。 CO2可以均匀地混合或产生可变饱和斑,这可能导致预期地震信号的较大可变性,特别是对于低于50%的饱和度。我们调查了澳大利亚维多利亚州Gippsland盆地的地震信号的地震信号。利用经典岩石物理方程,储层水平的二氧化碳可检测性将呈现一些挑战,但在储层以上检测的可能性是非常有利的。理解储存形成的相对异质性对于建立时间流逝地震技术的不确定性和检测限而言至关重要。

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