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Analysis of the Eddy Dissipation Concept formulation for MILD combustion modelling
Fuel
◽
10.1016/j.fuel.2018.03.110
◽
2018
◽
Vol 224
◽
pp. 687-700
◽
Cited By ~ 23
Author(s):
Michał T. Lewandowski
◽
Ivar S. Ertesvåg
Keyword(s):
Mild Combustion
◽
Combustion Modelling
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Related Documents
Cited By
References
MILD Combustion: Modelling Challenges, Experimental Configurations and Diagnostic Tools
10.3389/978-2-88971-700-2
◽
2021
◽
Keyword(s):
Diagnostic Tools
◽
Mild Combustion
◽
Combustion Modelling
Download Full-text
Editorial: MILD Combustion: Modelling Challenges, Experimental Configurations, and Diagnostic Tools
Frontiers in Mechanical Engineering
◽
10.3389/fmech.2021.726633
◽
2021
◽
Vol 7
◽
Author(s):
Alessandro Parente
◽
Mara de Joannon
Keyword(s):
Diagnostic Tools
◽
Mild Combustion
◽
Combustion Modelling
Download Full-text
COMBUSTION MODELLING IN A BIOMASS-FED FURNACE
Proceedings of International Symposium on Convective Heat and Mass Transfer in Sustainable Energy
◽
10.1615/ichmt.2009.conv.1340
◽
2009
◽
Author(s):
Diego Lentini
◽
F. Rispoli
◽
P. Venturini
◽
Carlo Vincenzo Iossa
Keyword(s):
Combustion Modelling
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A Novel Computational Approach to Combustion Modelling
10.21236/ada400632
◽
2001
◽
Author(s):
Samuel Paolucci
◽
Joseph M. Powers
Keyword(s):
Computational Approach
◽
Combustion Modelling
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Alcohols as Energy Carriers in MILD Combustion
Energy & Fuels
◽
10.1021/acs.energyfuels.0c03862
◽
2021
◽
Author(s):
Giovanni B. Ariemma
◽
Pio Bozza
◽
Mara de Joannon
◽
Pino Sabia
◽
Giancarlo Sorrentino
◽
...
Keyword(s):
Energy Carriers
◽
Mild Combustion
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A novel method to improve stability of MILD combustion in a highly heat-extracted furnace
Fuel
◽
10.1016/j.fuel.2021.120315
◽
2021
◽
Vol 292
◽
pp. 120315
Author(s):
Feifei Wang
◽
Pengfei Li
◽
Jianchun Mi
◽
Ziyun Shu
Keyword(s):
Mild Combustion
◽
Novel Method
◽
Improve Stability
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Comprehensive numerical study of molecular diffusion effects and Eddy Dissipation Concept model in MILD combustion
International Journal of Hydrogen Energy
◽
10.1016/j.ijhydene.2020.12.206
◽
2021
◽
Vol 46
(13)
◽
pp. 9252-9265
Author(s):
Amiratabak Azarinia
◽
Hossein Mahdavy-Moghaddam
Keyword(s):
Molecular Diffusion
◽
Numerical Study
◽
Concept Model
◽
Mild Combustion
◽
Diffusion Effects
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Effect of thermal input, excess air coefficient and combustion mode on natural gas MILD combustion in industrial-scale furnace
Fuel
◽
10.1016/j.fuel.2021.121179
◽
2021
◽
Vol 302
◽
pp. 121179
Author(s):
Mingming Huang
◽
Ruichuan Li
◽
Jikang Xu
◽
Shen Cheng
◽
Haoxin Deng
◽
...
Keyword(s):
Natural Gas
◽
Industrial Scale
◽
Combustion Mode
◽
Mild Combustion
◽
Excess Air
◽
Excess Air Coefficient
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Corrigendum to “Data driven analysis and prediction of MILD combustion mode” [Combust. Flame 223 (2021) 474–485]
Combustion and Flame
◽
10.1016/j.combustflame.2021.01.017
◽
2021
◽
Vol 227
◽
pp. 481-482
Author(s):
Kherlen Jigjid
◽
Chitoshi Tamaoki
◽
Yuki Minamoto
◽
Ryota Nakazawa
◽
Nakamasa Inoue
◽
...
Keyword(s):
Data Driven
◽
Combustion Mode
◽
Mild Combustion
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Micro-combustion modelling with RBF-FD: A high-order meshfree method for reactive flows in complex geometries
Applied Mathematical Modelling
◽
10.1016/j.apm.2021.01.032
◽
2021
◽
Vol 94
◽
pp. 635-655
Author(s):
Víctor Bayona
◽
Mario Sánchez-Sanz
◽
Eduardo Fernández-Tarrazo
◽
Manuel Kindelan
Keyword(s):
Meshfree Method
◽
High Order
◽
Complex Geometries
◽
Reactive Flows
◽
Combustion Modelling
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