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Accelerating The Dissolution of CO_2 in Aquifers

机译:加速CO_2在含水层中的溶解

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Assessments of aquifer storage capacity and security have generally assumed that reservoir engineering would be limited to site selection and placement of the injection wells. In previous work we have shown that it is possible to accelerate the dissolution of CO_2 in brines by active reservoir engineering achieved by pumping brines from regions where it is undersaturated into regions occupied by CO_2 [1]. Here we report 2- and 3-D reservoir simulations of aquifers with/without horizontal confinement and with/without inhomogeneity. For a horizontally confined reservoir geometry, we find that it is possible to dissolve essentially all injected CO_2 within 300 years at an energy cost that is less than 10% of the cost of compressing the CO_2 from atmospheric pressure to reservoir conditions. We anticipate that reservoir engineering to accelerating dissolution can simplify risk assessment and permitting of storage projects, and will expand the number and geographic extent of reservoirs which are acceptable for storage.
机译:对含水层储存能力和安全性的评估通常假定储层工程仅限于现场选择和注入井的布置。在以前的工作中,我们已经表明,通过将储层中的欠饱和盐水抽入CO_2所占据的区域,通过主动储层工程可以加快CO_2在盐水中的溶解[1]。在这里,我们报告了带有/不带有水平约束以及带有/不带有非均质性的含水层的二维和3-D储层模拟。对于水平受限的储层几何形状,我们发现可以在300年内溶解几乎所有注入的CO_2,其能源成本不到将CO_2从大气压力压缩到储层条件的成本的10%。我们预计,加快溶出度的油藏工程可以简化风险评估和存储项目的审批程序,并将扩大可接受的油藏数量和地理范围。

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