精馏塔自动回流比调节系统的研制

L. Tugashova, A. Zatonskiy
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摘要

本文综述了石油初级炼制的管理方法。为了提高精馏塔的分离效率,提出了稳定精馏塔回流比的方法。工作目的。研制一种炼油厂常压塔中柴油段回流比自动调节系统。在获得的自动控制系统的参与下,研究常压塔的操作模式。材料和方法。介绍了某小容量炼油厂常压装置炼油精馏工艺的特点。本文将介绍与大容量机组相比,中间循环闪蒸的散热特点。对设施的参数进行了选择和分组。为实现设定的目标工作,建立了小功率炼油装置管壳式换热器用柴油加热油段的热平衡微分方程动态模型。建立了电极脱水机物料平衡方程,计算了脱盐油消耗量和海水消耗量。得到了常压塔柴油段回流比与常压塔循环闪蒸进出口温度、急性分馏消耗、循环闪蒸和油分选择的关系。所得到的装置模型由两部分组成:电脱水器和热交换器段的线性部分决定冷却剂的温度,非线性输出部分根据工艺参数决定回流比。该模型使研究扰动对被控参数的影响成为可能。本文选择MATLAB/Simulink软件产品作为实现模型的工具。利用研究对象开发的模型,在MATLAB/Simulink中建立了一个再通比自动调节系统。结论。给出了考虑扰动条件下常压塔内柴油段回流比自动调节系统的建模结果。
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DEVELOPMENT OF AN AUTOMATIC REFLUX RATIO REGULATION SYSTEM FOR THE RECTIFICATION COLUMN
This article provides an overview of the methods of managing the primary petroleum refining. To improve separation efficiency was proposed to stabilize the reflux ratio in the rectifying column. Purpose of work. To develop a system for automatic regulation of the reflux ratio of diesel fuel sec-tions in an atmospheric column of the refinery oil. To study the operating modes of an atmospheric column with the participation of the obtained automatic control system. Materials and methods. The article presented the features of the oil rectification process at the atmospheric unit of a small capacity refinery. The features of heat dissipation with intermediate circulation flash compared to a large-capacity unit will be shown in this article. The parameters of the facility were selected and divided into groups. A dynamic model of the section of shell-and-tube heat exchangers for heating oil with diesel fuel at a low-power refinery unit in the form of differential equations of heat balance has been developed to achieve the goal set work. An electrode dehydrator material balance equation has been compiled to find desalted oil consumption and saltwater consumption. The dependence of the reflux ratio of diesel fuel sections of the atmospheric column on the inlet and outlet temperatures of the atmospheric column circulation flash, the acute fractionation con-sumption, circulation flash, and oil fraction selection was obtained. The resulting model of the facili-ty consists of two parts: the linear part of the electric dehydrator and heat exchanger section, which determines the temperatures of the coolants, and the nonlinear output part, which determines the re-flux ratio depending on technological parameters. The proposed model makes it possible to investi-gate the effect of disturbances on the controlled parameters. The MATLAB/Simulink software prod-uct has been chosen as a tool to implement the model. A system of automatic regulation of the re-flux ratio in MATLAB/Simulink has been built with the participation of the developed model of the study object. Conclusion. The results of modeling a system for automatic regulation of the reflux ratio of diesel fuel sections in the atmospheric column of a low-power refinery unit has been ob-tained, taking into account the peculiarities of the process under disturbance conditions.
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