Investigating The Impact Of Relative Permeability Curves On Cold CO2 Injection

M. Abbaszadeh, S. Shariatipour
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Abstract

Different injection methods have been already proposed by different researchers to improve the solubility of CO2 in the formation brine. In this study an injection technique is presented to cool down (liquefy) the supercritical CO2 in the wellbore by the use of a downhole cooler equipment. CO2 with a higher temperature enters the cooling equipment and exits the equipment with a lower temperature at the down-stream in a same injection pressure. The colder (liquid) CO2 has a higher solubility in brine, higher density and viscosity which increases the security of CO2 storage. With this method the supercritical CO2 is cooled down to a liquid phase to increase the solubility at the wellbore and thus it eliminated the risk of phase change or pressure and rate fluctuation in liquid CO2 injection from the surface. To simulate this technique two cases have been considered by changing the relative permeability curves. The results show that using the combination of CO2STORE and THERMAL options shows a higher dissolution compared with only inserting the relative permeability curves corresponding the injection condition.
研究相对渗透率曲线对冷注CO2的影响
不同的研究人员已经提出了不同的注入方法来提高CO2在地层盐水中的溶解度。在这项研究中,提出了一种注入技术,通过使用井下冷却设备来冷却(液化)井筒中的超临界CO2。在相同的喷射压力下,温度较高的CO2进入冷却设备,从下游温度较低的设备排出。较冷的(液态)CO2在盐水中的溶解度更高,密度和粘度更高,这增加了CO2储存的安全性。通过这种方法,超临界CO2被冷却为液相,以增加在井筒中的溶解度,从而消除了从地面注入液态CO2时发生相变或压力和速率波动的风险。为了模拟该技术,通过改变相对渗透率曲线考虑了两种情况。结果表明,与仅插入相应注入条件的相对渗透率曲线相比,采用CO2STORE和THERMAL相结合的方案具有更高的溶解效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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