首页> 外文会议>SEG Houston 2013 >Integrating reservoir properties and seismic with borehole and surface time-lapse gravity data for monitoring C02 sequestration: A site investigation
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Integrating reservoir properties and seismic with borehole and surface time-lapse gravity data for monitoring C02 sequestration: A site investigation

机译:将储层性能和地震与钻孔和表面延时重力数据集成,用于监测C02封存:一个站点调查

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We present a feasibility study on the potential application of time-lapse gravity as- a monitoring tool for a proposed CO_2 sequestration test site. The results are a component of a larger geotechnical suitability study to evaluate a specific field's potential for CO_2 storage and to evaluate potential techniques for effective monitoring there. The reservoir model is constructed from detailed site data as available through separate reservoir, characterization studies. The associated gravity inversion is a highly constrained binary approach that incorporates reservoir geometry from seismic data and internal 3D distributions of density change derived from the reservoir engineering database. The complete study includes both surface and joint surface/borehole time-lapse gravity data for five CO_2 plume movement scenarios. In this paper, we present a subset of the entire study. Results indicate that the site likely has a favorable combination of geometry, depth, thickness, and predicted density change from CO_2 movement to be effectively monitored with time-lapse gravity.
机译:我们提出了对延时重力的潜在应用的可行性研究 - 用于提出的CO_2螯合试验部位的监测工具。结果是较大的地质适用性研究的组成部分,以评估特定领域的CO_2储存的潜力,并评估那里有效监测的潜在技术。储库模型由详细的网站数据构成,通过单独的储层,表征研究。相关的重力反演是一种高度约束的二进制方法,其包括从地震数据和源自储库工程数据库的密度变化的内部3D分布的储层几何图。完整的研究包括表面和关节表面/钻孔时间流逝重力数据,用于五个CO_2羽流运动场景。在本文中,我们提出了整个研究的子集。结果表明,该站点可能具有从Co_2运动的几何,深度,厚度和预测密度变化的有利组合,以便有效地监测时间流动重力。

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