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Swirl flow tube reactor technology: an experimental and computational fluid dynamics study

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Methusalem
Keywords
REYNOLDS STRESS MODEL, COKE FORMATION, STEAM CRACKING, NAPHTHA PYROLYSIS, PRODUCTION COSTS, PIPE, SIMULATION, HYDROCARBONS, PHOSPHITE. Reactor design, INHIBITOR, Heat transfer, Steam cracking, CFD, Swirl flow, Pressure drop

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Citation

Please use this url to cite or link to this publication:

MLA
Schietekat, Carl, Marco WM Van Goethem, Kevin Van Geem, et al. “Swirl Flow Tube Reactor Technology: An Experimental and Computational Fluid Dynamics Study.” CHEMICAL ENGINEERING JOURNAL 238 (2014): 56–65. Print.
APA
Schietekat, C., Van Goethem, M. W., Van Geem, K., & Marin, G. (2014). Swirl flow tube reactor technology: an experimental and computational fluid dynamics study. CHEMICAL ENGINEERING JOURNAL, 238, 56–65. Presented at the 20th International Conference on Chemical Reactors (CHEMREACTOR).
Chicago author-date
Schietekat, Carl, Marco WM Van Goethem, Kevin Van Geem, and Guy Marin. 2014. “Swirl Flow Tube Reactor Technology: An Experimental and Computational Fluid Dynamics Study.” Chemical Engineering Journal 238: 56–65.
Chicago author-date (all authors)
Schietekat, Carl, Marco WM Van Goethem, Kevin Van Geem, and Guy Marin. 2014. “Swirl Flow Tube Reactor Technology: An Experimental and Computational Fluid Dynamics Study.” Chemical Engineering Journal 238: 56–65.
Vancouver
1.
Schietekat C, Van Goethem MW, Van Geem K, Marin G. Swirl flow tube reactor technology: an experimental and computational fluid dynamics study. CHEMICAL ENGINEERING JOURNAL. Elsevier; 2014;238:56–65.
IEEE
[1]
C. Schietekat, M. W. Van Goethem, K. Van Geem, and G. Marin, “Swirl flow tube reactor technology: an experimental and computational fluid dynamics study,” CHEMICAL ENGINEERING JOURNAL, vol. 238, pp. 56–65, 2014.
@article{4287383,
  author       = {Schietekat, Carl and Van Goethem, Marco WM and Van Geem, Kevin and Marin, Guy},
  issn         = {1385-8947},
  journal      = {CHEMICAL ENGINEERING JOURNAL},
  keywords     = {REYNOLDS STRESS MODEL,COKE FORMATION,STEAM CRACKING,NAPHTHA PYROLYSIS,PRODUCTION COSTS,PIPE,SIMULATION,HYDROCARBONS,PHOSPHITE. Reactor design,INHIBITOR,Heat transfer,Steam cracking,CFD,Swirl flow,Pressure drop},
  language     = {eng},
  location     = {Luxemburg, Luxemburg},
  pages        = {56--65},
  publisher    = {Elsevier},
  title        = {Swirl flow tube reactor technology: an experimental and computational fluid dynamics study},
  url          = {http://dx.doi.org/10.1016/j.cej.2013.08.086},
  volume       = {238},
  year         = {2014},
}

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