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Numerical simulations of pressure build up and salt precipitation during carbon dioxide storage in saline aquifers

机译:盐水层中二氧化碳储存过程中压力建立和盐沉淀的数值模拟

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摘要

The storage of large amounts of carbon dioxide (CO2) captured from fossil fuel fired power plants in deep saline aquifers can be an effective and promising measure for reducing the emissions of greenhouse gases. Massive CO2 injection into saline aquifers may cause multi-scale phenomena such as pressure buildup in a large scale, CO2 plume evolution in a medium scale and salt precipitation in a small scale. In this study, three-dimensional simulations are performed to investigate the propagation of pressure and the impact of salt precipitation on the process of large scale CO2 injection into the saline aquifers. Apart from the different scales of the processes, the numerical results show clearly different behaviours of the pressure changes in saline aquifers with different boundaries. Different types of salt precipitation occur adjacent to the injection well, presenting distinct impacts on the fluid flow. Affected by salt precipitation, the porosity and permeability are reduced, leading to declined transportation and degraded injectivity with different boundary conditions. The interplay between pressure buildup and solid saturation is compared in saline aquifers with different boundary conditions.
机译:从化石燃料发电厂捕获的大量二氧化碳(CO2)储存在深层盐水中可能是减少温室气体排放的有效而有前途的措施。向盐水层中大量注入CO2可能会引起多尺度的现象,例如大规模的压力累积,中等规模的CO2羽流演化和小规模的盐析。在这项研究中,进行了三维模拟,以研究压力的传播以及盐沉淀对向盐水层中大量注入CO2的过程的影响。除了过程的规模不同之外,数值结果还清楚地显示了具有不同边界的盐水层中压力变化的行为。在注入井附近会发生不同类型的盐沉淀,这对流体流动产生了明显的影响。在盐分沉积的影响下,孔隙度和渗透率降低,导致在不同边界条件下的运移下降和注入性下降。在具有不同边界条件的盐水层中,比较了压力累积和固体饱和度之间的相互作用。

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