Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame
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Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame. / Pfeiler, Claudia; Raupenstrauch, Harald.
20th European Symposium on Computer Aided Process Engineering. 2010. S. 49-54.
20th European Symposium on Computer Aided Process Engineering. 2010. S. 49-54.
Publikationen: Beitrag in Buch/Bericht/Konferenzband › Beitrag in Konferenzband
Harvard
Pfeiler, C & Raupenstrauch, H 2010, Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame. in 20th European Symposium on Computer Aided Process Engineering. S. 49-54.
APA
Pfeiler, C., & Raupenstrauch, H. (2010). Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame. In 20th European Symposium on Computer Aided Process Engineering (S. 49-54)
Vancouver
Pfeiler C, Raupenstrauch H. Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame. in 20th European Symposium on Computer Aided Process Engineering. 2010. S. 49-54
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Bibtex - Download
@inproceedings{b4e899de62d94f8489eca812b606e90b,
title = "Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame",
author = "Claudia Pfeiler and Harald Raupenstrauch",
year = "2010",
language = "English",
isbn = "978-0-444-53569-6",
pages = "49--54",
booktitle = "20th European Symposium on Computer Aided Process Engineering",
}
RIS (suitable for import to EndNote) - Download
TY - GEN
T1 - Application of Different Turbulence Models to Study the Effect of Local Anisotropy for a Non-Premixed Piloted Methane Flame
AU - Pfeiler, Claudia
AU - Raupenstrauch, Harald
PY - 2010
Y1 - 2010
M3 - Conference contribution
SN - 978-0-444-53569-6
SP - 49
EP - 54
BT - 20th European Symposium on Computer Aided Process Engineering
ER -