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Modeling of asphaltene precipitation and arterial deposition.

机译:沥青质沉淀和动脉沉积的模型。

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摘要

The potential problem produced by asphaltene deposition during oil production has motivated the development of several experimental techniques and theoretical models, trying to understand and predict the asphaltene behavior. Despite the work devoted to understanding this subject, asphaltene deposition still represents a challenging unresolved problem.;Predicting asphaltene flow assurance issues requires the ability to model phase behavior of asphaltenes as a function of temperature, pressure, and composition. It has been previously shown that the Perturbed Chain form of the Statistical Associating Fluid Theory equation of state (PC-SAFT EOS) accurately predicts crude oil bubble point and density as well as asphaltene precipitation conditions. This approach has been used to examine the effects of gas injection, oil based mud contamination, and asphaltene polydispersity on the phase behavior of asphaltenes. In this work, a new application of the PC-SAFT EOS in studying the effect of carbon dioxide injection reveals an interesting dual effect of this compound in inducing or preventing asphaltene precipitation, depending on the operating conditions.;Novel tools for understanding and predicting properties of hydrocarbon and crude oil systems are also presented and discussed. These tools include the One-Third Rule---a correlation between refractive index and mass density---, a revised solubility parameter modeling approach that includes an improved mixing rule for solubility parameters, and the development of a general method for modeling asphaltene stability.;The development of a simulation tool that simultaneously accounts for asphaltene precipitation, aggregation and deposition is also presented and discussed. The thermodynamic modeling using the PC-SAFT EOS is coupled with kinetic models and transport equations. The mechanism for asphaltene precipitation and deposition proposed in this work has been found to be consistent with various experiments and field observations. Furthermore, it also provides an explanation to some paradoxes, such as why some asphaltene precipitation inhibitors worsen asphaltene deposition or why strong asphaltene precipitants, such as propane, produce less amount of deposit.;The work presented in this dissertation will contribute in the development of a foundation for oil sample analysis and simulations that can predict the likelihood of asphaltene deposition in the newly found oil fields worldwide.
机译:石油生产过程中沥青质沉积产生的潜在问题促使了一些实验技术和理论模型的发展,试图理解和预测沥青质的行为。尽管致力于了解这一主题的工作,沥青质沉积仍然代表着一个尚未解决的挑战性问题。预测沥青质流量保证问题需要能够根据温度,压力和组成对沥青质的相行为进行建模。先前已经证明,统计缔合流体理论状态方程(PC-SAFT EOS)的扰动链形式可以准确预测原油的气泡点和密度以及沥青质的沉淀条件。该方法已用于检查注气,油基泥浆污染和沥青质多分散度对沥青质相行为的影响。在这项工作中,PC-SAFT EOS在研究二氧化碳注入效果方面的新应用揭示了该化合物在诱导或防止沥青质沉淀方面的有趣双重作用,具体取决于操作条件。;用于理解和预测性能的新颖工具还介绍并讨论了碳氢化合物和原油系统。这些工具包括“三分法则”(折射率与质量密度之间的关系),修订的溶解度参数建模方法(其中包括改进的溶解度参数混合规则)以及开发用于建模沥青质稳定性的通用方法。;也介绍并讨论了同时考虑沥青烯沉淀,聚集和沉积的模拟工具的开发。使用PC-SAFT EOS的热力学模型与动力学模型和传输方程式结合在一起。已经发现这项工作中提出的沥青质沉淀和沉积机理与各种实验和现场观察一致。此外,它也为某些悖论提供了解释,例如为什么某些沥青质沉淀抑制剂会使沥青质沉积恶化,或为什么强沥青质沉淀物(如丙烷)产生较少的沉积物。石油样品分析和模拟的基础,可以预测全世界新发现的油田中沥青质沉积的可能性。

著录项

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Chemical.;Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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