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Coupling of Solvent and Hot Water to Improve Heavy Oil Recovery: Experimental and Simulation Studies

机译:溶剂和热水的偶联改善重油回收:实验和仿真研究

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There are abundant heavy oil deposits characterized by shallow depth, thin pay zone, low porosity, and bottom water in Western Canada. These types of reservoirs are neither suitable for thermal heavy oil recovery techniques (e.g. SAGD) nor for solvent injection (e.g. VAPEX). Coupling of Solvent and Hot Water (CSHW) injection was proposed and examined as an alternative to improve the heavy oil recovery in these reservoirs. In this study, a series of core flooding tests and numerical simulations were conducted to investigate and evaluate the CSHW injection performance in thin heavy oil reservoirs containing oil with viscosity of around 1,000 to 6,000 cP. To identify the contribution of hot water and solvent as well as their effectiveness when they combined, three types of core flooding tests were performed individually using hot water, solvent, and CSHW injection. In addition, the effects of oil viscosity, water injection temperature (15°C, 24°C, 50°C, 65°C) and solvent (C1, C3, C1+C3) on oil recovery were examined. Moreover, effects of parameters such as injection rate, displacement volume, slug size, and injection pattern were also investigated. Furthermore, the core flooding tests were history matched based on the established numerical simulation model. The effects of temperature and solvent components on multi-phase fluid flow were examined through numerical simulation. As the result, the optimal CSHW injection parameters were screened based on experimental and numerical studies conducted. Results of this study showed that the oil recovery factor was enhanced by 19.1% when temperature of injection water increases from 24°C to 65°C. More importantly, it was found that the CSHW is a more feasible option that recovers higher amount of oil at lower cost when compared with pure solvent or hot water injection. In addition results indicated that if smaller slugs of hot water and solvent are injected, the recovery process is more efficient. In this particular study, injection of smaller slugs resulted in 53.5% recovery factor. These results indicate that the CSHW is a promising hybrid process for the heavy oil recovery which requires low facility investment.
机译:有丰富的重油矿床特点是深度浅,薄油层,低孔隙度,底水在加拿大西部。这些类型的储层既不适合于热重油回收技术(例如SAGD),也不用于溶剂注入(例如VAPEX)。偶合溶剂和热水(CSHW)注射,提出并研究,以提高在这些水库的稠油开采替代。在这项研究中,一系列的岩心驱替试验和数值模拟进行了调查和评价在含有油与周围1000〜6000厘泊的粘度薄重油储层CSHW喷射性能。为了识别以及它们的有效性的热水和溶剂的贡献时,他们相结合,被单独使用热水,溶剂和CSHW注射执行三种类型的岩心驱替试验。此外,油的粘度,注水温度的影响(15℃,24℃,50℃,65℃)上的油回收和溶剂(C1,C3,C1 + C3)进行了研究。此外,参数如喷射速度,位移量大,段塞尺寸和喷射模式效应也进行了研究。此外,根据建立的数值模拟模型的核心水浸测试历史相匹配。通过数值模拟进行了检查温度和溶剂组分上多相流体流的影响。作为结果,最佳CSHW注射参数是基于进行的实验和数值模拟研究筛选。本研究的结果表明,该油采收因子是由19.1%提高时的从24℃至65℃注射用水的温度升高。更重要的是,据发现,CSHW在于以较低的成本的油中恢复较高量时用纯溶剂或热水注射相比更可行的选择。此外结果表明,如果热水和溶剂更小蛞蝓被注入,恢复过程是更有效的。在这个特定的研究中,小蛞蝓的注射导致53.5%的采收率。这些结果表明,CSHW是针对稠油开采要求低的设备投资有前途的混合过程。

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