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Steam injection for heavy oil recovery: Modelling of wellbore heat efficiency and analysis of steam injection performance

机译:用于重油采收的蒸汽注入:井筒热效率建模和蒸汽注入性能分析

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The aims of this work are to present a comprehensive mathematical model for estimating wellbore heat efficiency and to analyze performance of steam injection for heavy oil recovery. In this paper, we firstly introduce steam injection process briefly. Secondly, a simplified approach of predicting steam pressure in wellbores is presented and a complete expression for steam quality is derived. More importantly, both direct and indirect methods are adopted to determine the wellbore heat efficiency. Then, the mathematical model is solved using an iterative technique. After the model is validated with measured field data, we study the effects of wellhead injection rate and wellhead steam quality on steam injection performance reflected in wellbores. Next, taking cyclic steam stimulation as an example, we analyze steam injection performance reflected in reservoirs with numerical reservoir simulation method. Finally, the significant role of improving wellbore heat efficiency in saving water and fuels is discussed in detail. The results indicate that we can improve the wellbore heat efficiency by enhancing wellhead injection rate or steam quality. However, high wellbore heat efficiency does not necessarily mean satisfactory steam injection performance reflected in reservoirs or good performance of heavy oil recovery. Moreover, the paper shows that using excellent insulation materials is a good way to save water and fuels due to enhancement of wellbore heat efficiency. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是提供一个综合的数学模型,以估算井眼的热效率,并分析用于重油采收的注蒸汽性能。在本文中,我们首先简要介绍蒸汽注入过程。其次,提出了一种预测井筒中蒸汽压力的简化方法,并得出了蒸汽质量的完整表达式。更重要的是,直接和间接方法都可以用来确定井眼的热效率。然后,使用迭代技术求解数学模型。用实测数据验证模型后,我们研究井口注水速率和井口蒸汽质量对井筒中反映的注汽性能的影响。接下来,以循环蒸汽增产为例,采用数值模拟方法对储层反映的注汽性能进行分析。最后,详细讨论了提高井眼热效率在节水和节油方面的重要作用。结果表明,我们可以通过提高井口注入速率或蒸汽质量来提高井眼热效率。然而,高井筒热效率并不一定意味着在储层中反映出令人满意的蒸汽注入性能或稠油采收率的良好性能。此外,本文表明,由于提高了井筒的热效率,使用优质的保温材料是节省水和燃料的好方法。 (C)2015 Elsevier Ltd.保留所有权利。

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