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A numerical investigation of the species transport approach for modeling of gaseous combustion

Year 2021, , 2054 - 2067, 30.12.2021
https://doi.org/10.18186/thermal.1051312
An Erratum to this article was published on May 16, 2022. https://dergipark.org.tr/en/pub/thermal/issue/69909/1117698

Abstract

This present work shows a study of the effect of thermal radiation in the simulation of a turbulent, non-premixed diesel-air, hydrogen-air, kerosene-air, n-butanol, pentane-air, propane-air and methane–air used in a 2D geometry cylindrical combustion chamber. The numerical simulation based on the solution of the mass, momentum, energy and the chemical species conservation equations was performed for steady state condition using computation Fluid Dynamic (CFD), while the turbulence modeling was considered via standard k–ε model. The results indicate that highest mass fraction of NO emissions with hydrogen-air fuel compared to diesel fuel. The results showed a better performance of kerosene-air alternative based on the emissions characteristics in the present work. The CO2 emission reduced with hydrogen-air compared to diesel fuel due to better combustion. A significant decrease of emissions characteristics (O2, H2O and NO) was observed. The present numerical investigated results of methane-air are compared to experimental results compared to Silva et al. (2007) and Garreton and Simonin (1994) for tool validation.

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  • The article references can be accessed from the .pdf file.
Year 2021, , 2054 - 2067, 30.12.2021
https://doi.org/10.18186/thermal.1051312
An Erratum to this article was published on May 16, 2022. https://dergipark.org.tr/en/pub/thermal/issue/69909/1117698

Abstract

References

  • The article references can be accessed from the .pdf file.
There are 1 citations in total.

Details

Primary Language English
Subjects Thermodynamics and Statistical Physics
Journal Section Articles
Authors

Upendra Rajak This is me 0000-0002-3884-8758

Prerana Nashıne This is me 0000-0002-6555-3306

Prem Kumar Chaurasıya This is me 0000-0002-3433-2439

Tikendra Nath Verma This is me 0000-0002-1156-0412

Publication Date December 30, 2021
Submission Date June 6, 2020
Published in Issue Year 2021

Cite

APA Rajak, U., Nashıne, P., Kumar Chaurasıya, P., Nath Verma, T. (2021). A numerical investigation of the species transport approach for modeling of gaseous combustion. Journal of Thermal Engineering, 7(Supp 14), 2054-2067. https://doi.org/10.18186/thermal.1051312
AMA Rajak U, Nashıne P, Kumar Chaurasıya P, Nath Verma T. A numerical investigation of the species transport approach for modeling of gaseous combustion. Journal of Thermal Engineering. December 2021;7(Supp 14):2054-2067. doi:10.18186/thermal.1051312
Chicago Rajak, Upendra, Prerana Nashıne, Prem Kumar Chaurasıya, and Tikendra Nath Verma. “A Numerical Investigation of the Species Transport Approach for Modeling of Gaseous Combustion”. Journal of Thermal Engineering 7, no. Supp 14 (December 2021): 2054-67. https://doi.org/10.18186/thermal.1051312.
EndNote Rajak U, Nashıne P, Kumar Chaurasıya P, Nath Verma T (December 1, 2021) A numerical investigation of the species transport approach for modeling of gaseous combustion. Journal of Thermal Engineering 7 Supp 14 2054–2067.
IEEE U. Rajak, P. Nashıne, P. Kumar Chaurasıya, and T. Nath Verma, “A numerical investigation of the species transport approach for modeling of gaseous combustion”, Journal of Thermal Engineering, vol. 7, no. Supp 14, pp. 2054–2067, 2021, doi: 10.18186/thermal.1051312.
ISNAD Rajak, Upendra et al. “A Numerical Investigation of the Species Transport Approach for Modeling of Gaseous Combustion”. Journal of Thermal Engineering 7/Supp 14 (December 2021), 2054-2067. https://doi.org/10.18186/thermal.1051312.
JAMA Rajak U, Nashıne P, Kumar Chaurasıya P, Nath Verma T. A numerical investigation of the species transport approach for modeling of gaseous combustion. Journal of Thermal Engineering. 2021;7:2054–2067.
MLA Rajak, Upendra et al. “A Numerical Investigation of the Species Transport Approach for Modeling of Gaseous Combustion”. Journal of Thermal Engineering, vol. 7, no. Supp 14, 2021, pp. 2054-67, doi:10.18186/thermal.1051312.
Vancouver Rajak U, Nashıne P, Kumar Chaurasıya P, Nath Verma T. A numerical investigation of the species transport approach for modeling of gaseous combustion. Journal of Thermal Engineering. 2021;7(Supp 14):2054-67.

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