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1D model for coupled simulation of steam cracker convection section with improved evaporation model

Pieter Verhees UGent, Ismaël Amghizar UGent, Jühl Goemare, Abdul Rahman Akhras, Guy Marin UGent, Kevin Van Geem UGent and Geraldine Heynderickx UGent (2016) CHEMIE INGENIEUR TECHNIK . 88(11). p.1650-1664
abstract
The radiation and convection section of a steam cracker are thermally coupled. Optimization and design requires a coupled simulation of both sections. In this work a 1D model for the convection section, CONVEC-1D, is developed. Several models for the different heat transfer phenomena are implemented and evaluated. For flow boiling, an empirical and a mechanistic model are developed and compared for both single- and multicomponent hydrocarbon feeds. The latter is performing best over a wide range of operating conditions, taking into account the different two-phase flow regimes. The coupled iterative procedure is demonstrated for an n-pentane steam cracker convection section.
Please use this url to cite or link to this publication:
author
organization
year
type
journalArticle (original)
publication status
published
keyword
BOILING HEAT-TRANSFER, FLOW PATTERN MAP, HORIZONTAL TUBES, 2-PHASE FLOW, TRANSFER COEFFICIENTS, GENERAL CORRELATION, GAS-MIXTURES, LIQUID FLOW, PART I, REGIMES
journal title
CHEMIE INGENIEUR TECHNIK
volume
88
issue
11
pages
1650 - 1664
publisher
Wiley-Blackwell
Web of Science type
Article
Web of Science id
000388416800009
JCR category
ENGINEERING, CHEMICAL
JCR impact factor
0.877 (2016)
JCR rank
96/135 (2016)
JCR quartile
3 (2016)
ISSN
0009-286X
DOI
10.1002/cite.201600059
language
English
UGent publication?
yes
classification
A1
id
8507458
handle
http://hdl.handle.net/1854/LU-8507458
date created
2017-02-03 14:30:30
date last changed
2017-03-09 12:56:06
@article{8507458,
  abstract     = {The radiation and convection section of a steam cracker are thermally coupled. Optimization and design requires a coupled simulation of both sections. In this work a 1D model for the convection section, CONVEC-1D, is developed. Several models for the different heat transfer phenomena are implemented and evaluated. For flow boiling, an empirical and a mechanistic model are developed and compared for both single- and multicomponent hydrocarbon feeds. The latter is performing best over a wide range of operating conditions, taking into account the different two-phase flow regimes. The coupled iterative procedure is demonstrated for an n-pentane steam cracker convection section.},
  author       = {Verhees, Pieter and Amghizar, Isma{\"e}l and Goemare, J{\"u}hl and Akhras, Abdul Rahman and Marin, Guy and Van Geem, Kevin and Heynderickx, Geraldine},
  issn         = {0009-286X},
  journal      = {CHEMIE INGENIEUR TECHNIK },
  keyword      = {BOILING HEAT-TRANSFER,FLOW PATTERN MAP,HORIZONTAL TUBES,2-PHASE FLOW,TRANSFER COEFFICIENTS,GENERAL CORRELATION,GAS-MIXTURES,LIQUID FLOW,PART I,REGIMES},
  language     = {eng},
  number       = {11},
  pages        = {1650--1664},
  publisher    = {Wiley-Blackwell},
  title        = {1D model for coupled simulation of steam cracker convection section with improved evaporation model},
  url          = {http://dx.doi.org/10.1002/cite.201600059},
  volume       = {88},
  year         = {2016},
}

Chicago
Verhees, Pieter, Ismaël Amghizar, Jühl Goemare, Abdul Rahman Akhras, Guy Marin, Kevin Van Geem, and Geraldine Heynderickx. 2016. “1D Model for Coupled Simulation of Steam Cracker Convection Section with Improved Evaporation Model.” Chemie Ingenieur Technik 88 (11): 1650–1664.
APA
Verhees, P., Amghizar, I., Goemare, J., Akhras, A. R., Marin, G., Van Geem, K., & Heynderickx, G. (2016). 1D model for coupled simulation of steam cracker convection section with improved evaporation model. CHEMIE INGENIEUR TECHNIK , 88(11), 1650–1664.
Vancouver
1.
Verhees P, Amghizar I, Goemare J, Akhras AR, Marin G, Van Geem K, et al. 1D model for coupled simulation of steam cracker convection section with improved evaporation model. CHEMIE INGENIEUR TECHNIK . Wiley-Blackwell; 2016;88(11):1650–64.
MLA
Verhees, Pieter, Ismaël Amghizar, Jühl Goemare, et al. “1D Model for Coupled Simulation of Steam Cracker Convection Section with Improved Evaporation Model.” CHEMIE INGENIEUR TECHNIK 88.11 (2016): 1650–1664. Print.