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催化裂化先进控制工艺计算模型的开发
引用本文:刘现峰,孟凡东,彭飞,沙颖逊.催化裂化先进控制工艺计算模型的开发[J].石油炼制与化工,2002,33(2):43-47.
作者姓名:刘现峰  孟凡东  彭飞  沙颖逊
作者单位:洛阳石油化工工程公司炼制研究所,河南洛阳,471003
摘    要:为了满足催化裂化先进控制技术的需要,开发了催化裂化提升管反应器工艺计算模型。该模型考虑了催化裂化原料油性质,催化剂性质,装置尺寸和操作条件的影响,能够提供催化裂化先进控制技术所需的反应苛刻度,转化率,裂化产品率,催化剂循环量,汽油辛烷值等重要工艺参数的计算,该模型计算速度快,精度高,应用简便,可满足催化裂化先进控制技术的要求。

关 键 词:催化裂化装置  数学模型  先进控制  参数  工艺
修稿时间:2001年5月9日

DEVELOPMENT OF FCC MODEL FOR ADVANCED PROCESSING CONTROL
Liu Xianfeng,Meng Fandong,Peng Fei,Sha Yingxun.DEVELOPMENT OF FCC MODEL FOR ADVANCED PROCESSING CONTROL[J].Petroleum Processing and Petrochemicals,2002,33(2):43-47.
Authors:Liu Xianfeng  Meng Fandong  Peng Fei  Sha Yingxun
Abstract:A FCC model was developed for FCC advanced processing control (APC). The effects of FCC feedstock properties, catalyst performance, unit structure and size as well as operating conditions were taken into consideration in the model. Processing parameters which are essential to FCC APC including reaction severity, conversion, products' yields, catalyst circulation rate and cracked naphtha octane number, etc. can be provided by calculation. With its short running time, high precision and easiness to use, the model can meet the demands of FCC APC.
Keywords:catalytic cracker  mathematical programming  advanced control  parameter  
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