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Fluid-heat dynamics and tech no-economic analysis in a deep saline aquifer

机译:深盐含水层中的流体热动力学和技术无经济分析

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Carbon dioxide sequestration is one of the most potent ways to offset global warming. Deep saline aquifers are one of the prime targets for carbon dioxide sequestration, among several storage media. Here, a reservoir simulation study was conducted on a repository - a deep saline aquifer to store carbon dioxide. The basis of the study was to evaluate the fluid flow and heat transfer mechanisms under non-isothermal conditions. Different mass and heat transfer mechanisms were studied, and diffusion and conduction were found to have profound effects on the fate of CO2. Plume height was varied along with reservoir geometry to determine their effects on the spread of the plume. Both reservoir geometry and permeability anisotropy were found to impact the plume shape. The results show that changing the reservoir geometry changed the fate of CO2. When the reservoir was made wider, solubility trapping prevailed. In contrast, when reservoir length was narrowed, residual and capillary trapping took over. Cost analysis considering a single well of the Ketzin site, Germany, was carried out to add to the existing database, along with source-sink matching.
机译:二氧化碳封存是抵消全球变暖的最有效的方式之一。深盐含水层是几种储存介质中二氧化碳封存的主要目标之一。在这里,在储存库上进行了储层模拟研究 - 一种盐水含水层来储存二氧化碳。该研究的基础是在非等温条件下评估流体流动和传热机制。研究了不同的质量和传热机制,发现扩散和传导对CO 2的命运具有深远的影响。羽流高度与储层几何相同,以确定它们对羽流蔓延的影响。发现储层几何和渗透性各向异性都会影响羽流形状。结果表明,改变水库几何形状改变了二氧化碳的命运。当储存器更宽时,溶解度俘获占据了持续的。相反,当储层长度缩小时,残留和毛细管捕获接管。考虑到德国Ketzin网站的单一井的成本分析是为了添加到现有数据库以及源汇匹配。

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