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- W1976902743 abstract "Abstract Permanent storage of CO 2 in saline aquifers is known as one of the best methods for carbon dioxide sequestration. Understanding the role of convection in CO 2 dissolution of saline aquifers – which affects the long-term fate of the injected CO 2 and the security of storage – is extremely important. In this paper, two types of experiments are performed; first, visualization experiment in Hele–Shaw cell; and second, quantitative experiments at elevated pressure. These experiments are used to investigate the effect of Density-Driven Convection (DDC) on CO 2 dissolution rate in saline aquifers. For this aim; first, visualization test is performed in a Hele–Shaw cell to observe convective instabilities and its effect on dissolution rate. Afterward, quantitative tests are performed, in which four parameters are calculated: Total Dissolution, Diffusion Dissolution (DD), Convection Dissolution (CD), and CO 2 Convective Flux ( F CO2 ). Through employing these parameters, the behavior of convection and its effects on CO 2 dissolution rate based on the scaled experiments is shown, and two scaling relationships one between Rayleigh and Sherwood number and the other one between CO 2 Convective Flux and Rayleigh number are developed. Such scaling relationships provide an estimation of the maximum convective dissolution of CO 2 in saline aquifers which would be useful for assessing suitable CO 2 storage sites." @default.
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- W1976902743 date "2014-11-01" @default.
- W1976902743 modified "2023-10-14" @default.
- W1976902743 title "Experimental study of density-driven convection effects on CO2 dissolution rate in formation water for geological storage" @default.
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- W1976902743 doi "https://doi.org/10.1016/j.jngse.2014.09.020" @default.
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