Integration of Operability Framework and Pareto Optimal Front to Calculate Optimal Condition of Ethane Cracking Process

Authors

  • M. Farsi Department of Chemical Engineering, School of Chemical and Petroleum Engineering, Shiraz University, Shiraz, Iran

DOI:

https://doi.org/10.37256/sce.122020492

Keywords:

operability framework, pareto optimal front, process optimization, ethane cracking, mathematical modeling

Abstract

The main aim of this research is to present an optimization procedure based on the integration of operability framework and multi-objective optimization concepts to find the single optimal solution of processes. In this regard, the Desired Pareto Index is defined as the ratio of desired Pareto front to the Pareto optimal front as a quantitative criterion to analyze the performance of chemical processes. The Desired Pareto Front is defined as a part of the Pareto front that all outputs are improved compared to the conventional operating condition. To prove the efficiency of proposed optimization method, the operating conditions of ethane cracking process is optimized as a base case. The ethylene and methane production rates are selected as the objectives in the formulated multi-objective optimization problem. Based on the simulation results, applying the obtained operating conditions by the proposed optimization procedure on the ethane cracking process improve ethylene production by about 3% compared to the conventional condition.  

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Published

2020-09-24

How to Cite

(1)
Farsi, M. Integration of Operability Framework and Pareto Optimal Front to Calculate Optimal Condition of Ethane Cracking Process. SCE 2020, 1, 105-113.