304
Views
23
CrossRef citations to date
0
Altmetric
Original Articles

Large Eddy Simulation of a Premixed Bunsen Flame Using a Modified Thickened-Flame Model at Two Reynolds Number

&
Pages 1231-1272 | Received 30 Dec 2008, Accepted 28 May 2009, Published online: 13 Oct 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

I. Langella, N. Swaminathan, Y. Gao & N. Chakraborty. (2017) Large Eddy Simulation of Premixed Combustion: Sensitivity to Subgrid Scale Velocity Modeling. Combustion Science and Technology 189:1, pages 43-78.
Read now
I. Langella, N. Swaminathan, F. A. Williams & J. Furukawa. (2016) Large-Eddy Simulation of Premixed Combustion in the Corrugated-Flamelet Regime. Combustion Science and Technology 188:9, pages 1565-1591.
Read now
Ivan Langella & Nedunchezhian Swaminathan. (2016) Unstrained and strained flamelets for LES of premixed combustion. Combustion Theory and Modelling 20:3, pages 410-440.
Read now

Articles from other publishers (20)

Prashant Shrotriya, Ping Wang, Hai-xiang Zeng, Xi-rui Zhou, Antonio Ferrante & Fei Tian. (2023) Large eddy simulation of partially premixed flames with inhomogeneous inlets based on the DTF combustion model. Aerospace Science and Technology 139, pages 108400.
Crossref
Omer Rathore & Salvador Navarro-Martinez. (2023) Flame Dynamics Modelling Using Artificially Thickened Models. Flow, Turbulence and Combustion.
Crossref
Pradeep Kumar Seshadri & Ashoke De. (2021) A robust sharp interface based immersed boundary framework for moving body problems with applications to laminar incompressible flows. Computers & Mathematics with Applications 83, pages 24-56.
Crossref
Pradeep Kumar Seshadri & Ashoke De. (2020) Investigation of shock wave interactions involving stationary and moving wedges. Physics of Fluids 32:9.
Crossref
Zhi X. Chen, Ivan Langella & Nedunchezhian Swaminathan. 2020. Environmental Impact of Aviation and Sustainable Solutions. Environmental Impact of Aviation and Sustainable Solutions.
Pradeep Kumar Seshadri & Ashoke De. (2020) A novel sharp interface immersed boundary framework for viscous flow simulations at arbitrary Mach number involving complex and moving boundaries. Computers & Fluids 206, pages 104579.
Crossref
Nitish Arya & Ashoke De. (2019) Effect of grid sensitivity on the performance of wall adapting SGS models for LES of swirling and separating–reattaching flows. Computers & Mathematics with Applications 78:6, pages 2035-2051.
Crossref
Shilong Guo, Jinhua Wang, Xutao Wei, Senbin Yu, Meng Zhang & Zuohua Huang. (2018) Numerical simulation of premixed combustion using the modified dynamic thickened flame model coupled with multi-step reaction mechanism. Fuel 233, pages 346-353.
Crossref
Umair Ahmed & Robert Prosser. (2017) A Posteriori Assessment of Algebraic Scalar Dissipation Models for RANS Simulation of Premixed Turbulent Combustion. Flow, Turbulence and Combustion 100:1, pages 39-73.
Crossref
Pratik Das & Ashoke De. (2016) Numerical study of flow physics in supersonic base-flow with mass bleed. Aerospace Science and Technology 58, pages 1-17.
Crossref
Huahua XiaoHuahua Xiao. 2016. Experimental and Numerical Study of Dynamics of Premixed Hydrogen-Air Flames Propagating in Ducts. Experimental and Numerical Study of Dynamics of Premixed Hydrogen-Air Flames Propagating in Ducts 71 105 .
Pratik Das & Ashoke De. (2015) Numerical investigation of flow structures around a cylindrical afterbody under supersonic condition. Aerospace Science and Technology 47, pages 195-209.
Crossref
Huahua Xiao, Qiangling Duan, Lin Jiang, Xuechao He & Jinhua Sun. (2015) Effect of bend on premixed flame dynamics in a closed duct. International Journal of Heat and Mass Transfer 88, pages 297-305.
Crossref
R. Mercier, T. Schmitt, D. Veynante & B. Fiorina. (2015) The influence of combustion SGS submodels on the resolved flame propagation. Application to the LES of the Cambridge stratified flames. Proceedings of the Combustion Institute 35:2, pages 1259-1267.
Crossref
Huahua Xiao, Xuechao He, Qiangling Duan, Xisheng Luo & Jinhua Sun. (2014) An investigation of premixed flame propagation in a closed combustion duct with a 90° bend. Applied Energy 134, pages 248-256.
Crossref
Nasim Shahbazian, Clinton Groth & Omer Gulder. (2013) Comparative Study of Algebraic and Transported FSD Models for LES of Premixed Flames in Flamelet and Thin Reaction Zones Regimes. Comparative Study of Algebraic and Transported FSD Models for LES of Premixed Flames in Flamelet and Thin Reaction Zones Regimes.
Ashoke De & Sumanta Acharya. (2012) Dynamics of upstream flame propagation in a hydrogen-enriched premixed flame. International Journal of Hydrogen Energy 37:22, pages 17294-17309.
Crossref
Ashoke De & Sumanta Acharya. (2012) Parametric study of upstream flame propagation in hydrogen-enriched premixed combustion: Effects of swirl, geometry and premixedness. International Journal of Hydrogen Energy 37:19, pages 14649-14668.
Crossref
Huahua Xiao, Xiaobo Shen & Jinhua Sun. (2012) Experimental study and three-dimensional simulation of premixed hydrogen/air flame propagation in a closed duct. International Journal of Hydrogen Energy 37:15, pages 11466-11473.
Crossref
F.E. Hernández-Pérez, F.T.C. Yuen, C.P.T. Groth & Ö.L. Gülder. (2011) LES of a laboratory-scale turbulent premixed Bunsen flame using FSD, PCM-FPI and thickened flame models. Proceedings of the Combustion Institute 33:1, pages 1365-1371.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.