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HAZOP study of a fixed bed reactor for MTBE synthesis using a dynamic approach

机译:使用动态方法进行MTBE合成的固定床反应器的HAZOP研究

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摘要

A methodology for hazard investigation based on the integration of a mathematical model approach into hazard and operability analysis is presented. This approach is based on mathematical modelling of a process unit where both steady-state analysis, including analysis of the steady states multiplicity and stability, and dynamic simulation are used. The dynamic simulation serves for the investigation of consequences of failures of the main controlled parameters, i.e. inlet temperature, feed temperature and feed composition. This simulation is also very useful for the determination of the influence of failure duration on the reactor behaviour. On the other hand, the steady state simulation can predict the reactor behaviour in a wide range of failure magnitude and determine the parametric zones, where shifting from one steady state to another one may occur. A fixed bed reactor for methyl tertiary-butyl ether synthesis was chosen to identify potential hazard and operational problems of a real process. (c) 2008 Institute of Chemistry, Slovak Academy of Sciences.
机译:提出了一种将数学模型方法集成到危害和可操作性分析中的危害调查方法。此方法基于过程单元的数学建模,其中同时使用了稳态分析(包括对稳态多重性和稳定性的分析)和动态仿真。动态模拟用于调查主要控制参数(即入口温度,进料温度和进料组成)失效的后果。该模拟对于确定故障持续时间对反应堆性能的影响也非常有用。另一方面,稳态仿真可以预测反应堆在大范围的失效幅度下的行为,并确定可能发生从一种稳态转变为另一种稳态的参数区。选择了用于甲基叔丁基醚合成的固定床反应器,以识别实际过程中的潜在危害和操作问题。 (c)斯洛伐克科学院2008年化学研究所。

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