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Modeling and Control of Three-Phase Gravilty Separators in Oil Production Facilities

机译:石油生产设施中三相重力分离器的建模与控制

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Oil production facilities exhibit complex and challenging lenging dynamic behavior. A dynamic mathematical modeling study was done to address the tasks of design, control and optimization of such facilities. The focus of this paper is on the three-phase separator, where each phase''s dynamics are modeled. The hydrodynamics of liquid-liquid separation are modeled based on the American Petroleum Institute design criteria. Given some simplifying assumptions, the oil and gas phases'' dynamic behaviors are modeled assuming vapor-liquid phase equilibrium at the oil surface. In order to validate the developed mathematical model, an oil production facility simulation was designed and implemented based on such models. The simulation model consists of a two-phase separator followed by a three-phase separator. An upset in the oil component of the incoming oil-well stream is introduced to analyze its effect of the different process variables and produced oil quality. The simulation results demonstrate the sophistication of the model in spite of its simplicity.
机译:石油生产设施表现出复杂而富有挑战性的剧烈动态行为。进行了动态数学建模研究,以解决此类设施的设计,控制和优化任务。本文的重点是三相分离器,其中对每相的动力学进行建模。液-液分离的流体动力学是根据美国石油学会的设计标准建模的。在给出一些简化假设的情况下,假设油面处的汽液相平衡,则对油气相的动态行为进行建模。为了验证所开发的数学模型,基于此类模型设计并实施了石油生产设施仿真。该仿真模型由两相分离器和随后的三相分离器组成。引入的油井流中的油组分发生了不安定现象,以分析其对不同工艺变量和采出油质的影响。仿真结果证明了该模型的复杂性,尽管它很简单。

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    《》|2007年|4847-4853|共7页
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    Sayda; Atalla F.; Taylor; James H.;

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