Overview of the Meso-NH model version 5.4 and its applications C Lac, JP Chaboureau, V Masson, JP Pinty, P Tulet, J Escobar, M Leriche, ... Geoscientific Model Development 11 (5), 1929-1969, 2018 | 294 | 2018 |
A physical model for wildland fires JH Balbi, F Morandini, X Silvani, JB Filippi, F Rinieri Combustion and Flame 156 (12), 2217-2230, 2009 | 151 | 2009 |
Distribution of drifting seaweeds in eastern East China Sea T Komatsu, K Tatsukawa, JB Filippi, T Sagawa, D Matsunaga, A Mikami, ... Journal of Marine Systems 67 (3-4), 245-252, 2007 | 122 | 2007 |
Coupled atmosphere‐wildland fire modelling J Baptiste Filippi, F Bosseur, C Mari, C Lac, P Le Moigne, B Cuenot, ... Journal of Advances in Modeling Earth Systems 1 (4), 2009 | 97 | 2009 |
JDEVS: an implementation of a DEVS based formal framework for environmental modelling JB Filippi, P Bisgambiglia Environmental Modelling & Software 19 (3), 261-274, 2004 | 86 | 2004 |
Assessment of ForeFire/Meso-NH for wildland fire/atmosphere coupled simulation of the FireFlux experiment JB Filippi, X Pialat, CB Clements Proceedings of the Combustion Institute 34 (2), 2633-2640, 2013 | 82 | 2013 |
Simulation of coupled fire/atmosphere interaction with the MesoNH‐ForeFire models JB Filippi, F Bosseur, X Pialat, PA Santoni, S Strada, C Mari Journal of Combustion 2011 (1), 540390, 2011 | 79 | 2011 |
Discrete event front-tracking simulation of a physical fire-spread model JB Filippi, F Morandini, JH Balbi, DRC Hill Simulation 86 (10), 629-646, 2010 | 70 | 2010 |
Overview of the Meso-NH model version 5.4 and its applications, Geosci. Model Dev., 11, 1929–1969, 10.5194 C Lac, JP Chaboureau, V Masson, JP Pinty, P Tulet, J Escobar, M Leriche, ... | 68 | 2018 |
Overview of the Meso-NH model version 5.4 and its applications, Geosci. Model Dev., 11, 1929–1969 C Lac, JP Chaboureau, V Masson, JP Pinty, P Tulet, J Escobar, M Leriche, ... | 68 | 2018 |
Representation and evaluation of wildfire propagation simulations JB Filippi, V Mallet, B Nader International Journal of Wildland Fire 23 (1), 46-57, 2013 | 65 | 2013 |
The FireFlux II experiment: a model-guided field experiment to improve understanding of fire–atmosphere interactions and fire spread CB Clements, AK Kochanski, D Seto, B Davis, C Camacho, NP Lareau, ... International Journal of Wildland Fire 28 (4), 308-326, 2019 | 62 | 2019 |
Emulation of wildland fire spread simulation using deep learning F Allaire, V Mallet, JB Filippi Neural networks 141, 184-198, 2021 | 52 | 2021 |
The JDEVS modelling and simulation environment JB Filippi, M Delhom, F Bernardi | 51 | 2002 |
Simulation of a large wildfire in a coupled fire-atmosphere model JB Filippi, F Bosseur, C Mari, C Lac Atmosphere 9 (6), 218, 2018 | 48 | 2018 |
Turbulence and fire-spotting effects into wild-land fire simulators I Kaur, A Mentrelli, F Bosseur, JB Filippi, G Pagnini Communications in Nonlinear Science and Numerical Simulation 39, 300-320, 2016 | 46 | 2016 |
Evaluation of forest fire models on a large observation database JB Filippi, V Mallet, B Nader Natural Hazards and Earth System Sciences 14 (11), 3077-3091, 2014 | 46 | 2014 |
Wildland Fire Behaviour Case Studies and Fuel Models for Landscape‐Scale Fire Modeling PA Santoni, JB Filippi, JH Balbi, F Bosseur Journal of Combustion 2011 (1), 613424, 2011 | 45 | 2011 |
Evaluation of a data-driven wildland fire spread forecast model with spatially-distributed parameter estimation in simulations of the FireFlux I field-scale experiment C Zhang, M Rochoux, W Tang, M Gollner, JB Filippi, A Trouvé Fire Safety Journal 91, 758-767, 2017 | 40 | 2017 |
Towards data-driven operational wildfire spread modeling: A report of the NSF-funded WIFIRE workshop M Gollner, A Trouve, I Altintas, J Block, R de Callafon, C Clements, ... | 37* | 2015 |