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首页> 外文期刊>Journal of natural gas science and engineering >Determination of effective stress parameters for effective CO2 permeability in deep saline aquifers: An experimental study
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Determination of effective stress parameters for effective CO2 permeability in deep saline aquifers: An experimental study

机译:确定深层盐水中有效CO2渗透性的有效应力参数:实验研究

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Global warming has been a major threat to the world for many decades, and CO2 geo-sequestration in deep saline aquifers has recently been identified as an effective solution due to its ability to greatly mitigate anthropogenic CO2 emissions to the atmosphere. However, CO2 sequestration-induced chemical and mineralogical reactions affect the hydro-mechanical characteristics of natural formations, resulting in limited injectability to aquifers. A detailed knowledge of the hydro-mechanical behaviour of natural formations is therefore important to enhance the safety and effectiveness of the CO2 storage process. Such understanding can only be gained on the basis of in-depth knowledge of the applied effective stresses on the formations. The aim of this study was therefore to understand the effect of reservoir salinity level on the effective stress parameters of deep saline aquifer rock under various in-situ conditions, including salinity levels ranging from 0 to 30% (NaCl concentration by weight) and confining pressures ranging 20-35 MPa. Tri-axial permeability tests were conducted for a range of injection pressures (1-12 MPa) under different confining pressures (20, 25, 30 and 35 MPa) at 35 degrees C constant temperature. Comprehensive SEM (scanning electron microscopy) and acoustic emission analyses were also conducted to clarify the observed results.
机译:几十年来,全球变暖一直是对世界的主要威胁,近来,深层盐水中的二氧化碳固存已被认为是一种有效的解决方案,因为它能够大大减轻人为的二氧化碳向大气中的排放。但是,CO 2固存引起的化学和矿物学反应会影响天然地层的水力力学特征,导致对含水层的注入能力有限。因此,对天然地层的水力力学行为的详细了解对于提高二氧化碳存储过程的安全性和有效性很重要。这种理解只能基于对地层上施加的有效应力的深入了解而获得。因此,本研究的目的是了解在各种现场条件下,盐度水平对深盐含水层岩石有效应力参数的影响,包括0至30%(按重量计的NaCl浓度)的盐度水平和围压范围为20-35 MPa。在35摄氏度的恒温条件下,在不同的围压(20、25、30和35 MPa)下,针对一定范围的注入压力(1-12 MPa)进行了三轴渗透率测试。还进行了全面的SEM(扫描电子显微镜)和声发射分析,以澄清观察到的结果。

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