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首页> 外文期刊>Journal of natural gas science and engineering >Experimental study of density-driven convection effects on CO2 dissolution rate in formation water for geological storage
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Experimental study of density-driven convection effects on CO2 dissolution rate in formation water for geological storage

机译:密度驱动对流对地质封存地层水中二氧化碳溶解速率影响的实验研究

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摘要

Permanent storage of CO2 in saline aquifers is known as one of the best methods for carbon dioxide sequestration. Understanding the role of convection in CO2 dissolution of saline aquifers - which affects the long-term fate of the injected CO2 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 CO2 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 CO2 Convective Flux (F-CO2). Through employing these parameters, the behavior of convection and its effects on CO2 dissolution rate based on the scaled experiments is shown, and two scaling relationships one between Rayleigh and Sherwood number and the other one between CO2 Convective Flux and Rayleigh number are developed. Such scaling relationships provide an estimation of the maximum convective dissolution of CO2 in saline aquifers which would be useful for assessing suitable CO2 storage sites. (C) 2014 Elsevier B.V. All rights reserved.
机译:将CO2永久存储在盐水层中是众所周知的隔离二氧化碳的最佳方法之一。了解对流在盐水层二氧化碳溶解中的作用-这会影响注入的二氧化碳的长期命运和储存的安全性-非常重要。在本文中,进行了两种类型的实验。首先,在Hele-Shaw细胞中进行可视化实验;第二,在高压下进行定量实验。这些实验用于研究密度驱动对流(DDC)对盐水层中CO2溶解速率的影响。为了这个目的;首先,在Hele-Shaw细胞中进行可视化测试,以观察对流不稳定性及其对溶出度的影响。然后,进行定量测试,计算出四个参数:总溶出度,扩散溶出度(DD),对流溶出度(CD)和CO2对流通量(F-CO2)。通过使用这些参数,在定标实验的基础上,显示了对流行为及其对二氧化碳溶解速率的影响,并建立了瑞利和舍伍德数之间的两个比例关系,以及二氧化碳对流通量和瑞利数之间的两个比例关系。这种比例关系提供了对盐水中含水层中CO2的最大对流溶解的估计,这对评估合适的CO2储存位点很有用。 (C)2014 Elsevier B.V.保留所有权利。

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