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首页> 外文期刊>Petroleum Science and Technology >Asphaltene Deposition under CO_2 Injection: An Experimental Study of the Bangestan Reservoir of Ahwaz Oilfield, SW Iran
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Asphaltene Deposition under CO_2 Injection: An Experimental Study of the Bangestan Reservoir of Ahwaz Oilfield, SW Iran

机译:CO_2注入下沥青质的沉积:伊朗西南部阿瓦士油田Bangestan油藏的实验研究

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摘要

It is essential that precipitation of asphaltenes is recognized early in the planning stage of any CO_2 enhanced oil recovery (EOR) project so that appropriate testing can be performed to evaluate whether there will be a negative impact on reservoir performance. This article presents detailed evaluations of slim tube data that were obtained during CO_2 injection using a medium-gravity Iranian crude oil. A crude oil from Bangestan reservoir of Ahwaz oilfield containing 18.2% asphaltenes with ~31.5 °API gravity was flooded by purified CO_2 (>96% CO2) in a slim tube apparatus under 2,700 psi at 110°C. We were going to determine the minimum miscibility pressure (MMP) of the sample oil under injection of CO_2 flood, but when a CO_2 slim tube test was performed for this oil at 2,700 psi, less than half of the saturated oil in the tube was recovered, which implied that the displacement process was immiscible. At this pressure, the asphaltene deposition in the slim tube apparatus was so severe that even a pressure gradient of 6,200 lb/in~2 was not able to displace any fluid through the capillary tube. Therefore, we abandoned MMP determination with this sample and investigated the problem. Due to the high percentage of asphaltenes in the sample, using the slim tube MMP as an apparatus for determining minimum miscibility pressure of CO_2 and sample oil can be misleading.
机译:必须在任何CO_2强化采油(EOR)项目的规划阶段的早期就认识到沥青质的沉淀,以便可以进行适当的测试以评估对储层性能是否有负面影响。本文介绍了使用中等重力伊朗原油在CO_2注入过程中获得的细管数据的详细评估。来自Ahwaz油田Bangestan油藏的原油,含有API重力约为31.5°C的18.2%沥青质,在110℃,2700 psi下的细管装置中被纯净的CO_2(> 96%CO2)驱油。我们将确定注入CO_2驱油后样品油的最小混溶压力(MMP),但是当在2700 psi下对该油进行CO_2细管测试时,只有不到一半的饱和油被回收。 ,这表明置换过程是不相容的。在此压力下,细管设备中的沥青质沉积非常严重,以至于即使压力梯度为6200 lb / in〜2也无法通过毛细管置换任何流体。因此,我们放弃了该样品的MMP测定,并研究了该问题。由于样品中沥青质的比例很高,因此使用细管MMP作为确定CO_2与样品油的最小混溶压力的设备可能会产生误导。

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