首页> 外文期刊>Journal of Energy Resources Technology >A Two-Layer Paraffin Deposition Structure Observed and Used to Explain the Removal and Aging of Paraffin Deposits in Wells and Pipelines
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A Two-Layer Paraffin Deposition Structure Observed and Used to Explain the Removal and Aging of Paraffin Deposits in Wells and Pipelines

机译:观察并用于解释井和管道中石蜡沉积物的清除和老化的两层石蜡沉积结构

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摘要

Paraffin fouling of pipelines and wells is a dynamic process involving deposition and removal. Deposited wax growth and hardening have been observed in the field. They must be properly evaluated at the design stage in order to develop a suitable and economic flow assurance strategy. Laboratory studies and direct observations on the nature and composition of the deposited wax have been made possible with the aid of a novel, axial wax deposition apparatus. This study resulted in an improved understanding and calculation of wax removal and aging rates. A turbulent burst mechanism was used to explain experimental observations made during this study as well as results recently published by other laboratories and field knowledge of wax removal and the aging/hardening process. Direct observations of the wax deposit nature and composition which were performed on samples removed from the deposited wax, provided essential information on the nature and composition of the deposit resulting from different flow regimes. These observations suggested that two distinct flowing zones (layers) and a wall-attached, thin, solid deposit are part of the flow-related deposition-removal process. A turbulent burst action, which is promoted in the near-wall area by the turbulent flow core zone, was used to explain experimental and field observations suggesting a selective removal of n-paraffin fractions. While the proposed removal mechanism acts selectively depending on the size of nonattached, crystallized wax, the transport of liquid n-alkanes components from the bulk, warmer zone to the near-wall colder region is considered as an overall "n-alkane" transport as accepted and used in calculations so far. The proposed two fluid layer model offers a framework for improving the design and operation (pigging and additive) strategies as well as for revisiting the accepted (safe) ranges of design velocities for waxy crude production and transport limes. This work aims to offer a better tool for estimating the pigging frequency, the optimal flow regime and a better additive testing and application strategy with considerable costs-saving to industry.
机译:管道和井的石蜡结垢是一个动态过程,涉及沉积和清除。在现场已经观察到沉积的蜡的生长和硬化。必须在设计阶段对其进行适当评估,以便制定合适的经济流量保证策略。借助于新颖的轴向蜡沉积设备,可以对沉积的蜡的性质和组成进行实验室研究和直接观察。这项研究提高了对蜡去除率和老化率的理解和计算。湍流破裂机制被用来解释在这项研究期间所做的实验观察,以及其他实验室最近发布的结果以及除蜡和老化/硬化过程的现场知识。对从沉积蜡中取出的样品进行的蜡沉积物性质和组成的直接观察,提供了有关由不同流动方式产生的沉积物性质和组成的基本信息。这些观察结果表明,两个不同的流动区域(层)和附着在壁上的稀薄固体沉积物是与流动相关的沉积去除过程的一部分。湍流核心区域在近壁区域促进了湍流爆发作用,用于解释实验和现场观察结果,表明有选择地去除了正构烷烃馏分。尽管所提出的去除机理取决于未附着的结晶蜡的大小而选择性地起作用,但液态正构烷烃组分从整体,较暖和的区域向近壁较冷区域的迁移被认为是总体“正构烷烃”的迁移到目前为止已被接受并用于计算。拟议的两层流体模型为改善设计和操作(生料和添加)策略以及重新评估蜡质原油生产和运输石灰的设计速度的可接受(安全)范围提供了框架。这项工作旨在提供一种更好的工具来估算清管频率,最佳流动状态以及更好的添加剂测试和应用策略,并为行业节省大量成本。

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