DocumentCode
3120502
Title
Computer simulation of an industrial ethane-cracking furnace operation
Author
Kerezsi, J.
Author_Institution
Tisza Chem. Group Plc, Univ. of Miskolc, Miskolc, Hungary
fYear
2013
fDate
6-8 June 2013
Firstpage
1
Lastpage
5
Abstract
A computer simulation strategy is presented that is focused on the application of modeling programs for the simulation of multistage chemical technology processes with a large number of equipment units, including reactors, is suggested for chemical transformation processes in reactors. The submitted strategy allows for the modeling of homogeneous and heterogeneous processes in reactors of any complexity on the basis of experimental data processing. The simulation of reactor processes has been performed with the use of the CHEMCAD program for the ethane thermal cracking. The main products of Steam Cracking Olefin production technology are the ethylene and propylene [1],[2]. In Eastern Europe mainly virgin naphtha, gas oil and hydrocarbon gases C3-C4, liquefied petroleum gases- are used as feedstocks. Depending on the type of the feed different type of furnaces geometry can be built into the unit serve as plug-flow reactors for thermal cracking of larger hydrocarbon molecules. There is a special furnace in the unit that cracks the recycled ethane.
Keywords
furnaces; organic compounds; petroleum; power engineering computing; C3-C4; CHEMCAD program; chemical transformation processes; computer simulation; equipment units; ethylene; gas oil; heterogeneous processes; homogeneous processes; hydrocarbon molecules; industrial ethane-cracking furnace operation; liquefied petroleum gases; modeling programs; multistage chemical technology processes; plug-flow reactors; propylene; steam cracking olefin production technology; thermal cracking; virgin naphtha; Computational modeling; Data models; Furnaces; Hydrocarbons; Inductors; Kinetic theory; Mathematical model; Chemcad; computer simulation; ethane pyrolysis; olefin production; optimization; thermal cracking;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy (IYCE), 2013 4th International Youth Conference on
Conference_Location
Sio??fok
Type
conf
DOI
10.1109/IYCE.2013.6604192
Filename
6604192
Link To Document