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首页> 外文期刊>Energies >Chemical Flooding in Heavy-Oil Reservoirs: From Technical Investigation to Optimization Using Response Surface Methodology
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Chemical Flooding in Heavy-Oil Reservoirs: From Technical Investigation to Optimization Using Response Surface Methodology

机译:稠油油藏中的化学驱:从技术研究到响应面方法的优化

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Heavy-oil resources represent a large percentage of global oil and gas reserves, however, owing to the high viscosity, enhanced oil recovery (EOR) techniques are critical issues for extracting this type of crude oil from the reservoir. According to the survey data in Oil & Gas Journal , thermal methods are the most widely utilized in EOR projects in heavy oil fields in the US and Canada, and there are not many successful chemical flooding projects for heavy oil reported elsewhere in the world. However, thermal methods such as steam injection might be restricted in cases of thin formations, overlying permafrost, or reservoir depths over 4500 ft, for which chemical flooding becomes a better option for recovering crude oil. Moreover, owing to the considerable fluctuations in the oil price, chemical injection plans should be employed consistently in terms of either technical or economic viewpoints. The numerical studies in this work aim to clarify the predominant chemical injection schemes among the various combinations of chemical agents involving alkali (A), surfactant (S) and polymer (P) for specific heavy-oil reservoir conditions. The feasibilities of all potential injection sequences are evaluated in the pre-evaluation stage in order to select the most efficient injection scheme according to the variation in the oil price which is based on practical market values. Finally, optimization procedures in the post-evaluation stage are carried out for the most economic injection plan by an effective mathematic tool with the purpose of gaining highest Net Present Value (NPV) of the project. In technical terms, the numerical studies confirm the predominant performances of sequences in which alkali-surfactant-polymer (ASP) solution is injected after the first preflushing water whereby the recovery factor can be higher than 47%. In particular, the oil production performances are improved by injecting a buffering viscous fluid right after the first chemical slug rather than using a water slug in between. The results of the pre-evaluation show that two sequences of the ASP group have the highest NPV corresponding to the dissimilar applied oil prices. In the post-evaluation, the successful use of response surface methodology (RSM) in the estimation and optimization procedures with coefficients of determination R 2 greater than 0.97 shows that the project can possibly gain 4.47 $MM at a mean oil price of 46.5 $/bbl with the field scale of a quarter five-spot pattern. Further, with the novel assumption of normal distribution for the oil price variation, the chemical flooding sequence of concurrent alkali-surfactant-polymer injection with a buffering polymer solution is evaluated as the most feasible scheme owing to the achievement of the highest NPV at the highly possible oil price of 40–55 $/bbl compared to the other scheme.
机译:重油资源在全球油气储量中占很大比例,但是,由于粘度高,提高采收率(EOR)技术是从储层中提取这类原油的关键问题。根据《石油与天然气杂志》的调查数据,热法在美国和加拿大的重油油田的EOR项目中使用最广泛,并且在世界其他地方也没有很多成功的重油化学驱项目。但是,在地层薄,上覆永久冻土或储层深度超过4500英尺的情况下,热力方法(例如注蒸汽)可能会受到限制,对于这些方法,化学驱法成为回收原油的更好选择。此外,由于石油价格的巨大波动,从技术或经济角度来看,应始终采用化学注入计划。这项工作中的数值研究旨在阐明针对特定重油储层条件的涉及碱(A),表面活性剂(S)和聚合物(P)的化学试剂的各种组合之间的主要化学注入方案。在预评估阶段评估所有潜在注入顺序的可行性,以便根据基于实际市场价值的油价变化选择最有效的注入方案。最后,通过一种有效的数学工具针对最经济的注入计划执行评估后阶段的优化程序,目的是获得项目的最高净现值(NPV)。用技术术语来说,数值研究证实了序列的主要性能,其中在第一次预冲洗水之后注入碱表面活性剂聚合物(ASP)溶液,因此回收率可以高于47%。特别地,通过在第一化学塞料之后立即注入缓冲粘性流体而不是在两者之间使用水塞子来改善采油性能。预评估的结果表明,ASP组的两个序列具有最高的NPV,对应于不同的应用油价。在后评估中,成功地在确定系数R 2大于0.97的估计和优化程序中成功使用响应面方法(RSM)表明,该项目在平均油价46.5 $ /的情况下可能获得4.47 $ MM的收益。 bbl的场标为四分之一五点模式。此外,在油价波动呈正态分布这一新假设的基础上,由于在较高的净现值下获得了最高的NPV,同时使用缓冲聚合物溶液注入碱-表面活性剂-聚合物的化学驱油顺序被认为是最可行的方案。与其他方案相比,可能的油价为40-55美元/桶。

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