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Modeling and Simulation for Olefin Production in Amir Kabir Petrochemical

机译:艾尔·卡比尔石化烯烃生产的建模与仿真

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摘要

The Ethylene production process is one of the most important aspects of a petrochemical plant. The bulk of the worldwide annual commercial production of Ethylene is based on thermal cracking of petroleum hydrocarbons with steam. This process is commonly called Steam cracking process. This article deals with Amir Kabir Petrochemical Olefin Furnaces that are located in special region of Bandar Imam in Iran and all required information and data for modeling are offered in this article. In this research, the effect of COT (Coil outlet temperature) on the reactor yield is gained. A simulator is developed by the use of a mathematical model, which describes the static operation of a naphtha thermal cracking furnace. The model is used to predict the steady state profile of Ethylene and Propylene products yield. To study even more, the thermal cracking is simulated with Linde company software. The results of mathematical model and simulation have been compared with laboratory results of Olefin unit of Amir Kabir Petrochemical.
机译:乙烯生产过程是石油化工厂最重要的方面之一。全球全球年产量的乙烯的大部分是基于具有蒸汽的石油烃的热破裂。该过程通常称为蒸汽开裂过程。本文涉及位于伊朗的Bandar IMAM特殊区域的Amir Kabir石化烯烃炉,并在本文中提供了所有必需的信息和建模数据。在该研究中,获得了COT(线圈出口温度)对反应器产率的影响。通过使用数学模型开发了一种模拟器,该模型描述了石脑油热裂纹炉的静态操作。该模型用于预测乙烯和丙烯产物产量的稳态轮廓。为了更多地研究,使用Linde公司软件模拟热裂纹。将数学模型和模拟结果与Amir Kabir石化的实验室结果进行了比较。

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