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首页> 外文期刊>Journal of natural gas science and engineering >Experimental study of permeability changes and its influencing factors with CO2 injection in coal
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Experimental study of permeability changes and its influencing factors with CO2 injection in coal

机译:渗透渗透性变化的实验研究及其影响煤中的二氧化碳注射因素

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Injecting CO2 into coal seams is a significant CO2 utilization approach when considering the dual environmental and energy benefits. However, the interaction of the coal matrix with CO2 is closely related to the permeability of a coal reservoir, which is simultaneously influenced by various factors, e.g., the moisture, temperature, coal rank and effective stress. To investigate the impact mechanism and the contribution of each influencing factor for the reservoir permeability and provide helps for the implementation schemes during the geological CO2 sequestration, a series of corresponding permeability tests were conducted under different adsorption pressures (2-10 MPa), moisture states (dry and wet), temperatures (35-65 degrees C), coal ranks (R-o,R-max = 0.68%-3.33%), effective stresses (3-10 MPa). The results show that coal matrix swelling induced by CO2 adsorption narrows the cleat width and reduces the permeability of a coal reservoir, which phenomenon is more serious for supercritical CO2 . Injecting CO2 into the wet coal causes a higher PALR than the dry coal, which can be owned to the synthesized influences of the CO2 adsorption swelling, moisture-induced swelling and water blocking effect. The temperature first reduces the permeability of CO2 bearing coal incipiently by the swelling strains (thermal swelling and CO2 adsorption swelling) and then alleviates the permeability loss due to the remarkable gas slippage effect. Although the medium rank coal possesses the highest PALR, its permeability is also larger than the low rank coal and the high rank coal after CO2 adsorption. A cyclic loading and unloading leads to an irreversible permeability loss of a coal, which is more obviously reflected on the CO2 bearing coals. The analysis of the permeability contribution ratio indicates that the coal rank, CO2 adsorption and effective stress variety are the main controlling factors for the reservoir permeability, followed by the moisture, and the influence of the temperature on the permeability drop is quite weak. In summary, taking into account the various influencing factors and optimizing the injection arrangement are conducive to the successful implementation of the geological CO2 sequestration.
机译:在考虑双重环境和能源益处时,将CO2注入煤层是一种重要的二氧化碳利用方法。然而,煤基质与CO2的相互作用与煤储层的渗透性密切相关,其同时受各种因素的影响,例如水分,温度,煤炭等级和有效应力。为了研究储层渗透率的每个影响因素的冲击机制和贡献,并提供在地质二氧化碳封存期间实施方案的有助于实施方案,在不同的吸附压力(2-10MPa),水分状态下进行一系列相应的渗透性试验(干湿),温度(35-65℃),煤炭(RO,R-MAX = 0.68%-3.33%),有效应力(3-10MPa)。结果表明,二氧化碳吸附诱导的煤基质肿胀变窄并降低了煤储层的渗透率,其对超临界CO2更严重的现象。将CO2注入湿煤导致比干煤更高的PALR,这可以拥有CO 2吸附肿胀,湿气诱导的溶胀和水阻滞效果的合成影响。温度首先通过膨胀菌株(热膨胀和CO 2吸附溶胀)造成CO 2轴承煤的渗透性,然后通过显着的气体滑动效果来减轻渗透性损失。虽然媒体排名煤具有最高的PALR,但其渗透性也大于CO 2吸附后的低级煤和高级煤。循环加载和卸载导致煤的不可逆渗透性损失,这在CO 2轴承煤上更明显地反映。渗透率的分析表明,煤炭等级,CO 2吸附和有效应力多样是储层渗透性的主要控制因素,其次是水分,温度对渗透性下降的影响是相当薄弱的。总之,考虑到各种影响因素和优化注射装置有利于地质二氧化碳封存的成功实施。

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