Unstrained and strained flamelets for LES of premixed combustion I Langella, N Swaminathan Combustion Theory and Modelling 20 (3), 410-440, 2016 | 68 | 2016 |
Large Eddy Simulation of a dual swirl gas turbine combustor: Flame/flow structures and stabilisation under thermoacoustically stable and unstable conditions ZX Chen, I Langella, N Swaminathan, M Stöhr, W Meier, H Kolla Combustion and Flame 203, 279-300, 2019 | 67 | 2019 |
Assessment of dynamic closure for premixed combustion large eddy simulation I Langella, N Swaminathan, Y Gao, N Chakraborty Combustion Theory and Modelling 19 (5), 628-656, 2015 | 47 | 2015 |
Application of unstrained flamelet SGS closure for multi-regime premixed combustion I Langella, N Swaminathan, RW Pitz Combustion and Flame 173, 161-178, 2016 | 41 | 2016 |
Prediction of local extinctions in piloted jet flames with inhomogeneous inlets using unstrained flamelets ZX Chen, I Langella, RS Barlow, N Swaminathan Combustion and Flame 212, 415-432, 2020 | 38 | 2020 |
Large-eddy simulation of premixed combustion in the corrugated-flamelet regime I Langella, N Swaminathan, FA Williams, J Furukawa Combustion science and technology 188 (9), 1565-1591, 2016 | 31 | 2016 |
Large-eddy simulation of reacting flows in industrial gas turbine combustor I Langella, ZX Chen, N Swaminathan, SK Sadasivuni Journal of Propulsion and Power 34 (5), 1269-1284, 2018 | 30 | 2018 |
Large eddy simulation of premixed combustion: sensitivity to subgrid scale velocity modeling I Langella, N Swaminathan, Y Gao, N Chakraborty Combustion Science and Technology 189 (1), 43-78, 2017 | 29 | 2017 |
A scaling law for the recirculation zone length behind a bluff body in reacting flows JC Massey, I Langella, N Swaminathan Journal of Fluid Mechanics 875, 699-724, 2019 | 27 | 2019 |
A priori analysis of sub-grid variance of a reactive scalar using DNS data of high Ka flames T Nilsson, I Langella, NAK Doan, N Swaminathan, R Yu, XS Bai Combustion Theory and Modelling 23 (5), 885-906, 2019 | 22 | 2019 |
Entropy and vorticity wave generation in realistic gas turbine combustors B Semlitsch, T Hynes, I Langella, N Swaminathan, AP Dowling Journal of Propulsion and Power 35 (4), 839-849, 2019 | 21 | 2019 |
Large eddy simulation of a bluff body stabilised premixed flame using flamelets JC Massey, I Langella, N Swaminathan Flow, Turbulence and Combustion 101 (4), 973-992, 2018 | 19 | 2018 |
A priori investigation of subgrid correlation of mixture fraction and progress variable in partially premixed flames ZX Chen, NAK Doan, S Ruan, I Langella, N Swaminathan Combustion Theory and Modelling 22 (5), 862-882, 2018 | 18 | 2018 |
Study of subgrid-scale velocity models for reacting and nonreacting flows I Langella, NAK Doan, N Swaminathan, SB Pope Physical Review Fluids 3 (5), 054602, 2018 | 18 | 2018 |
Filtered reaction rate modelling in moderate and high Karlovitz number flames: an a priori analysis T Nilsson, R Yu, NAK Doan, I Langella, N Swaminathan, XS Bai Flow, Turbulence and Combustion 103, 643-665, 2019 | 14 | 2019 |
Turbulent flame shape switching at conditions relevant for gas turbines I Langella, J Heinze, T Behrendt, L Voigt, N Swaminathan, M Zedda Journal of Engineering for Gas Turbines and Power 142 (1), 011026, 2020 | 12 | 2020 |
Turbulent flame shape switching at conditions relevant for gas turbines I Langella, J Heinze, T Behrendt, L Voigt, N Swaminathan, M Zedda Turbo Expo: Power for Land, Sea, and Air 58622, V04BT04A047, 2019 | 12 | 2019 |
The role of CFD in modern jet engine combustor design ZX Chen, I Langella, N Swaminathan Environmental Impact of Aviation and Sustainable Solutions, 2019 | 9 | 2019 |
Analysis of flame front breaks appearing in LES of inhomogeneous jet flames using flamelets A Soli, I Langella, ZX Chen Flow, Turbulence and Combustion, 1-32, 2022 | 6 | 2022 |
Large eddy simulation of premixed combustion using flamelets I Langella | 6 | 2016 |