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各种聚集动力学对沥青质沉积热泳速度的影响。

Impact of various aggregation kinetics on thermophoretic velocity of asphaltene deposition.

作者信息

Nikoo Amir Hossein, Ghaedi Mojtaba, Malayeri M Reza

机构信息

Department of Chemical Engineering, School of Chemical and Petroleum Engineering, Shiraz University, Shiraz, Iran.

Department of Petroleum Engineering, School of Chemical and Petroleum Engineering, Shiraz University, Shiraz, Iran.

出版信息

Sci Rep. 2024 Aug 8;14(1):18430. doi: 10.1038/s41598-024-69503-3.

Abstract

Asphaltene deposition may pose serious challenges to flow assurance of crude oil in well columns. Different aggregation kinetics would partly be responsible for asphaltene particle growth ending in deposition on the surface of well columns. This work primarily investigates the thermophoretic deposition velocity caused by temperature gradients inside well columns for various asphaltene aggregation kinetics, including crossover behaviour, sedimentation, reaction-limited aggregation (RLA), and diffusion-limited aggregation (DLA). To do so, the experimental observations of size distribution for a live crude oil was performed at 80 °C and pressure range of 4500-5500 psia. Moreover, various patterns of different size distributions were gathered from the literature for the sake of comparison. Next, a well column in southern Iran was selected to study the kinetic behaviour of thermophoretic velocity of deposition, with a difference between geothermal and static temperatures of around 5 to 50 °C. The non-isothermal deposition velocity was shown to decrease from the top to the bottom of the well column, according to the findings of the study. The results also revealed that the thermophoretic velocity decreases as particle size increases and vice versa. This was confirmed by examining a comparably large range of asphaltene particle sizes, ranging from approximately 100 nm to roughly 9 µm. Practical implications of these findings were also discussed which would provide guidance for mitigation of asphaltene deposition in well columns.

摘要

沥青质沉积可能给井筒中原油的流动保障带来严峻挑战。不同的聚集动力学在一定程度上会导致沥青质颗粒长大,最终沉积在井筒表面。本研究主要探讨了井筒内温度梯度引起的热泳沉积速度,涉及各种沥青质聚集动力学,包括交叉行为、沉降、反应受限聚集(RLA)和扩散受限聚集(DLA)。为此,在80°C和4500 - 5500 psia的压力范围内对一种活性原油进行了尺寸分布的实验观测。此外,为了进行比较,还从文献中收集了不同尺寸分布的各种模式。接下来,选择伊朗南部的一口井筒来研究热泳沉积速度的动力学行为,地温与静温之差约为5至50°C。根据研究结果,非等温沉积速度从井筒顶部到底部呈下降趋势。结果还表明,热泳速度随颗粒尺寸增大而降低,反之亦然。通过考察相当大范围内的沥青质颗粒尺寸(约100 nm至约9 µm),这一点得到了证实。还讨论了这些发现的实际意义,可为减轻井筒中的沥青质沉积提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b924/11310216/9742dbb846b8/41598_2024_69503_Fig1_HTML.jpg

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