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首页> 外文期刊>International Journal of Greenhouse Gas Control >An integrated model for CO2 hydrate formation in sand sediments for sub-seabed CO2 storage
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An integrated model for CO2 hydrate formation in sand sediments for sub-seabed CO2 storage

机译:海底CO2储存砂沉积物中CO2水合物形成的综合模型

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CO2 capture and storage has been considered to be one of the most effective strategies against global warming, among which CO2 storage in deep saline aquifers using the sealing effect of gas hydrate and CO2 storage in the sub-seabed sand sediment in the form of gas hydrate are of great interest nowadays, due to the large capacity of CO2 storage in sub-seabed sand sediments and low risk of CO2 leakage. To access those two options, an integrated model for CO2 hydrate formation, which includes hydrate formation rates on the gas front, on the hydrate film behind the gas front, and on the surface of the sand particles behind the gas front, is proposed in this study to predict hydrate formation morphologies in the sand sediment under the condition of gas-liquid two-phase flow. Then, numerical simulations of CO2 hydrate formation in the sand sediment are conducted, and unknown parameters in the models are determined by comparing the simulation results with experimental data. The simulation results indicate that CO2 hydrate formation on the hydrate film behind the gas front makes a great contribution to CO2 hydrate saturation near the boundary, occupies the pore space of the sand sediment, and results in the permeability reduction and the blockage of the gas flow. (C) 2016 Elsevier Ltd. All rights reserved.
机译:二氧化碳的捕获和储存被认为是应对全球变暖最有效的策略之一,其中利用气体水合物的封闭作用将二氧化碳储存在深层盐水中,以及将二氧化碳以气体水合物的形式储存在海底砂沉积物中。如今,由于海底砂沉积物中的CO2储存量大且CO2泄漏的风险低,因此引起了人们的极大兴趣。为了获得这两种选择,本文提出了一个用于CO2水合物形成的综合模型,该模型包括在气体前沿,在气体前沿后面的水合物膜上以及在气体前沿后面的砂粒表面上的水合物形成速率。研究预测气液两相流条件下沙沉积物中水合物的形成形态。然后,进行了沙子沉积物中CO2水合物形成的数值模拟,并通过将模拟结果与实验数据进行比较,确定了模型中的未知参数。模拟结果表明,在气体锋面后的水合物膜上形成CO2水合物,对边界附近的CO2水合物饱和度有很大贡献,占据了沙沉积物的孔隙空间,导致渗透率降低和气流阻塞。 。 (C)2016 Elsevier Ltd.保留所有权利。

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