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首页> 外文期刊>International Journal of Greenhouse Gas Control >Methodology to optimize the sizing of a corrective measure in case of leakage from a CO2 geological storage unit
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Methodology to optimize the sizing of a corrective measure in case of leakage from a CO2 geological storage unit

机译:在CO2地质存储单元泄漏的情况下优化纠正措施规模的方法

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摘要

To guarantee the safety of CO2 storage operations, to meet regulatory requirements and thus to be accepted by the public, the operator of a CO2 storage site has to demonstrate that the risks are adequately managed, which includes the treatment of potential irregularities. This paper proposes a methodology to choose a corrective measure and to optimize its sizing in case of leakage from a CO2 geological storage through a semi-pervious caprock, a fault, a fractured zone or any other leakage pathway on which it is difficult to directly act. The corrective measures considered in our work are limited to fluid and pressure management practices implemented for controlling the plume migration and eventually for extracting the leaking fluid. The methodology is based on the use of the Multi-Attribute Utility Theory (MAUT) which enables multi-criteria analysis over a continuous set of alternatives. The implementation on a case study illustrates the methodology applicability. The influence of the main assumptions and uncertainties are addressed through a sensitivity analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了保证二氧化碳存储操作的安全性,满足法规要求并因此为公众所接受,二氧化碳存储站点的运营商必须证明已对风险进行了适当管理,其中包括对潜在违规行为的处理。本文提出了一种方法,可以选择一种纠正措施,并在通过半渗透盖岩,断层,断裂带或任何其他难以直接作用的泄漏途径从CO2地质存储中泄漏的情况下优化其尺寸。我们工作中考虑的纠正措施仅限于为控制羽流迁移并最终用于抽取泄漏流体而实施的流体和压力管理实践。该方法基于多属性效用理论(MAUT)的使用,该理论可对一组连续的替代方案进行多标准分析。案例研究的实施说明了该方法的适用性。主要假设和不确定性的影响通过敏感性分析解决。 (C)2015 Elsevier Ltd.保留所有权利。

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