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Clusters of Asphaltene Nanoaggregates Observed in Oilfield Reservoirs

机译:油田储层中沥青质纳米聚集体的团簇

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摘要

Many studies have indicated that asphaltenes have two hierarchical nanocolloidal species, the nanoaggregate and the cluster of nanoaggregates. These two species, along with the dominant molecular architecture of asphaltenes comprise the Yen-Mullins model of asphaltenes. Delineating different nanocolloidal species is a challenge, and moreover, elucidating their corresponding practical importance is a necessity in this applied science. Moreover, it is necessary to continue testing this asphaltene nanoscience model especially for crude oils, as opposed to simply asphaltene solutions in laboratory solvents. Both the validity and applicability of this model are addressed by observing gravitational gradients of asphaltenes in black oil and mobile heavy oil columns in oilfield reservoirs. In this paper, we examine stacked oil reservoirs in an oilfield in Saudi Arabia using simple predictions from the Flory-Huggins-Zuo equation of state (FHZ EoS), with its foundation in the Yen-Mullins model. The extraordinary finding is that, for two mobile heavy oil columns in this oilfield, the asphaltene clusters alone account for very large asphaltene concentration gradients of a factor of 6 over a circumference of many tens of kilometers of the oil field. In certain local sections of the field, the predictions match exactly. Saturates, aromatics, resins, and asphaltenes (SARA) analyses of the crude oils are consistent with the simple model employed. The large gravitation gradients produced by asphaltene clusters dwarf corresponding predictions for nanoaggregates, confirming the existence and size of clusters per the Yen-Mullins model. Moreover, these results confirm the utility of reservoir analysis through application of the FHZ EoS. In addition, several wells were analyzed that penetrated the tar mat at the base of the oil column. Analysis of this tar mat is again consistent with the gravitation accumulation of asphaltenes and reinforces the FHZ EoS analysis of the oil column.
机译:许多研究表明,沥青质具有两个分层的纳米胶体物种,即纳米聚集体和纳米聚集体簇。这两个物种以及沥青质的主要分子结构构成了沥青质的Yen-Mullins模型。描绘不同的纳米胶体物种是一个挑战,此外,阐明其相应的实际重要性是该应用科学的必要条件。此外,有必要继续测试这种沥青质纳米科学模型,尤其是针对原油,这与实验室溶剂中的简单沥青质溶液相反。该模型的有效性和适用性都通过观察油田油藏中黑油和移动重油塔中沥青质的重力梯度来解决。在本文中,我们使用Flory-Huggins-Zuo状态方程(FHZ EoS)的简单预测(以Yen-Mullins模型为基础),研究了沙特阿拉伯油田的叠层油藏。非同寻常的发现是,对于该油田中的两个移动式重油塔,仅沥青质团簇就在数十公里油田的圆周上造成非常大的沥青质浓度梯度(系数为6)。在该字段的某些局部区域中,预测完全匹配。原油的饱和物,芳烃,树脂和沥青质(SARA)分析与所采用的简单模型一致。沥青质团簇产生的大引力梯度使相应的纳米团聚体预测值相形见,,从而证实了按Yen-Mullins模型进行的团簇的存在和大小。此外,这些结果证实了通过应用FHZ EoS进行储层分析的实用性。此外,还分析了几个油井底部穿透了焦油垫的井。对该沥青垫的分析再次与沥青质的重力累积一致,并加强了油柱的FHZ EoS分析。

著录项

  • 来源
    《Energy & fuels》 |2013年第maraaapra期|1752-1761|共10页
  • 作者单位

    Schlumberger-Do]l Research, Cambridge, Massachusetts 021S9, United States;

    Saudi Aramco, Dhahran 31311, Saudi Arabia;

    DBR Technology Center, Edmonton, Alberta T6N 1M9, Canada;

    Schlumberger Oilfield Services, Al-Khobar 31952, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:40:54

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