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A Numerical Simulation Study of Carbon-Dioxide Sequestration into a Depleted Oil Reservoir

机译:二氧化碳固存至枯竭油层的数值模拟研究

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Utilization of CO_2 for enhanced oil recovery and sequestration processes not only reduces greenhouse emissions but also awards economical benefits. Enhancing oil recovery in a sequestration is an optimization process that requires careful analysis. In CO_2 -enhanced oil recovery the main purpose is to maximize oil recovery with the minimum quantity of CO_2 while a maximum amount of CO_2 is aimed to store in a sequestration. Kartaltepe field having 32° API gravity oil in a carbonate formation from southeast Turkey lias been considered in this study. Reservoir rock and fluid data were evaluated and merged into CMG/STARS simulator. History matching study was done with production data to verify the results of the simulator with field data. From the results of simulation runs, it was realized that CO_2 injection can be applied to increase oil recovery, but sequestering of a high amount of CO_2 was found to be inappropriate for Kartaltepe field. Therefore, it was decided to focus on oil recovery while CO_2 was sequestered within the reservoir. Oil recovery was about 23% of original oil in place in 2006 for the field, it reached to 43% of original oil in place by injecting CO_2 after defining production and injection scenarios properly.
机译:利用CO_2增强采油和封存过程不仅减少了温室气体排放,而且还带来了经济利益。在封存中提高采收率是一个优化过程,需要仔细分析。在提高CO_2的采油量中,主要目的是以最少的CO_2量实现最大的采油量,而最大的CO_2量旨在封存。这项研究考虑了来自土耳其东南部利亚斯的碳酸盐岩地层中具有32°API重力油的Kartaltepe油田。对储层岩石和流体数据进行了评估,并将其合并到CMG / STARS模拟器中。使用生产数据进行历史匹配研究,以通过现场数据验证模拟器的结果。从模拟运行的结果可以看出,可以采用注入CO_2来提高采油率,但是发现大量的CO_2封存不适合Kartaltepe油田。因此,决定在将CO_2封存于油藏中的同时着重采油。 2006年,该油田的采油量约占该油田的原始油的23%,在正确定义了生产和注入方案后,通过注入CO_2达到了原始采油量的43%。

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