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A New Mathematical Model of Solvent-SAGD Process - Importance of Heat and Mass Transfer

机译:溶剂-SAGD过程的一种新数学模型 - 热量和传质的重要性

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The current in situ exploitation of oil sands in Alberta employs steam-based recovery methods, which are energy-intensive. A few companies are adding solvent to steam aiming to reduce steam requirements. The mechanism of oil recovery by steam with added solvent is not clear. Over the years, on several occasions- as at the present time- the oil industry has resorted to the use of solvents with steam in thermal recovery operations. The past trials with solvent were short-lived in view of the cost of solvents as well as the lack of success. Given the controversy regarding the use of solvents with steam, this work is intended to explain whether solvent injection with steam increases oil recovery or not. In this work, a new analytical model is developed for describing the solvent-SAGD performance based on the combination of an overall solvent mass balance, heat balance and volumetric oil displacement and Darcy's oil rate using a mixture viscosity model as a function of temperature and solvent concentration ahead of front which satisfy the equilibrium in the system. The objectives of this work are to predict: vapour-steam chamber growth, oil production rate, solvent production rate, solvent loss (or solvent retention) rate, and the effect of solvent type and concentration on the solvent-SAGD process. The results show that the rate of solvent retention increases over time, while the rate of solvent and bitumen production decreases. The efficiency of this process is evaluated using cumulative steam-oil and solvent-oil ratio, which permits a comparison of the efficiency of SAGD and solvent-SAGD processes for different solvents. On the whole, the results of this approach give a better understanding of the mechanism of oil production during the solvent-SAGD process by interconnecting vapour chamber conditions and the conditions of heated and diluted oil ahead of the interface.
机译:Alberta油砂的原位开采目前采用基于蒸汽的恢复方法,这是能量密集的。少数公司正在向蒸汽添加溶剂,旨在降低蒸汽要求。用添加的溶剂通过蒸汽回收的机制尚不清楚。多年来,几次 - 正如目前的那样 - 石油工业已经采取了在热回收行动中使用蒸汽的溶剂。鉴于溶剂的成本以及缺乏成功,过去的溶剂试验是短暂的。鉴于有关使用蒸汽的溶剂的争议,这项工作旨在解释与蒸汽的溶剂注射是否会增加溢油或不增加。在这项工作中,开发了一种新的分析模型,用于描述溶剂-SAGD性能,基于整个溶剂质量平衡,热平衡和体积油位移和达西的油速使用混合粘度模型作为温度和溶剂的功能在前面提前集中,满足系统平衡。这项工作的目标是预测:蒸汽室生长,油生产率,溶剂生产速率,溶剂损失(或溶剂保留)率,以及溶剂类型和浓度对溶剂-SAGD过程的影响。结果表明,溶剂潴留率随着时间的推移而增加,而溶剂和沥青产生的速率降低。使用累积蒸汽油和溶剂 - 油比评估该方法的效率,允许比较不同溶剂的SAGD和溶剂-SAGD方法的效率。总的来说,通过互连蒸汽室条件和在界面前方的加热和稀释油的条件,更好地理解溶剂-SAGD过程中的油生产机制。

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