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Residual trapping, solubility trapping and capillary pinning complement each other to limit CO2 migration in deep saline aquifers

机译:残留捕获,溶解度捕获和毛细血管钉彼此相互补充,以限制深盐含水层中的二氧化碳迁移

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We derive a theoretical model for the post-injection migration of a CO2 gravity current in a confined, sloping aquifer under the influence of residual trapping, solubility trapping, and capillary pinning. The resulting model consists of two coupled partial differential equations that describe the local thickness of the buoyant CO2 current and the thickness of the mound of brine saturated with dissolved CO2 as a function of time. We apply this model to a representative geological formation and provide estimates of the lifetime of the buoyant CO2 current and its maximum migration distance. Our analysis shows that residual trapping, solubility trapping, and capillary pinning complement each other in limiting the ultimate migration distance of CO2 gravity currents. The relative contribution of residual trapping, solubility trapping, and capillary pinning varies as a function of the injection volume. Our model can be used as a screening tool to evaluate the potential of deep saline aquifers for large-scale CO2 sequestration.
机译:在残留捕获,溶解度捕获和毛细管钉扎的影响下,我们在狭窄的倾斜含水层中获得了CO2重力电流的注射后迁移的理论模型。所得到的模型由两个耦合的部分微分方程组成,其描述了浮力CO2电流的局部厚度和用溶解的CO 2饱和盐水的厚度作为时间的函数。我们将该模型应用于代表性地质形成,并提供浮力二氧化碳电流寿命的估计及其最大迁移距离。我们的分析表明,残留捕获,溶解度捕获和毛细管钉扎在限制CO2重力电流的最终迁移距离时相互补充。残留捕获,溶解度捕获和毛细血管钉扎的相对贡献随着注射体积的函数而变化。我们的型号可用作筛选工具,以评估深盐含水层的大规模CO2隔离的潜力。

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