三相重选机的动态建模与仿真

Bishoy Magdi Abdu Sabir, Ibrahim Hassan M. Elamin, Hisham Rabie Sadiq
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引用次数: 1

摘要

目前已有许多研究详细阐述了卧式三相重力分离器的分离机理、分级和原油分离工艺设计。然而,令人惊讶的是,很少有关于它们的动力学、建模和仿真的出版物。对其动态行为的理解将有助于设计和调整该装置,该装置可用于调节水位,油位和气体压力以应对饲料变化。这篇科学论文使用Mathworks Matlab R2016b-x64进行了全面的数学分析、建模和仿真,并使用Aspen Hysys V10对采用卧式三相重力分离器的原油分离过程进行了建模和仿真。被称为比绍伊方程的方程式将有助于操作这个装置,找到许多参数,并看到一个参数对其他参数的影响。假设是:完全相分离,气相表现为理想气体,液体密度恒定。在实际应用中,为了提高分离机的效率,在分离机上设计了内部挡板来促进层流,但这里假设没有挡板是一个很大的问题,但借助这些方程,卧式三相重力分离机可以以最大的效率运行。方程中确定了以下参数:气高、水高、油高、跳堰时油高、气压力(进出)、水压力(进出)、油压力(进出),以及增大(控制阀杆位置)和减小(进口容积流量)对这些参数的影响。本文可以改变人们对油气开采和加工的看法,并可以帮助欧洲、亚洲和非洲的大型油气公司。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Modelling and Simulation of A Three-Phase Gravity Separator
There are many studies addressing in detail, the separation mechanisms, sizing, and design of the crude oil separation process using the horizontal 3-Phase Gravity Separators. Surprisingly, however, there are very few publications about their dynamics, modeling, and simulation. An understanding of its dynamic behavior will facilitate the design and tuning of the device that can be used to regulate the water level, oil level, and gas pressure against feed variations. This Scientific Paper presents a full mathematical analysis, modeling, and simulation using Mathworks Matlab R2016b-x64, modeling and simulation using Aspen Hysys V10 of a Crude Oil Separation Process using a horizontal 3-Phase Gravity Separator. Equations developed called Bishoy’s Equations will help to operate this device and to find many parameters and to see the effect of a parameter on others. The Assumptions are: complete phase separation, the vapor phase behaves like an ideal gas, and liquids densities are constant. Also, in practice, separators are designed with internal baffles to promote laminar flow to increase the efficiency of the separator, but it has been assumed that there are no baffles here which is a big problem but with the aid of these equations, the horizontal three-phase gravity separator can be operated at its maximum efficiency. The following parameters were determined in the equations: The height of gas, height of the water, height of oil, the height of oil when jumping the weir, the pressure of the gas (in and out), the pressure of water (in and out), the pressure of oil (in and out), and the effect of increasing  (control valve’s stem position) and decreasing  (inlet volumetric flowrate) on these parameters has been studied. This paper can change the view on oil and gas extraction and processing and can help large oil and gas companies in Europe, Asia, and Africa.
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