Fire dynamics simulator (version 5) technical reference guide K McGrattan, S Hostikka, J Floyd, H Baum, R Rehm, W Mell, R McDermott NIST special publication 1018 (5), 2010 | 5083* | 2010 |
Fire Dynamics Simulator User's Guide K McGrattan NIST special publication1019 6, 2013 | 1904 | 2013 |
Modelling aerosol transport and virus exposure with numerical simulations in relation to SARS-CoV-2 transmission by inhalation indoors V Vuorinen, M Aarnio, M Alava, V Alopaeus, N Atanasova, M Auvinen, ... Safety science 130, 104866, 2020 | 507 | 2020 |
Fire dynamics simulator with evacuation: FDS+ Evac T Korhonen, S Hostikka Technical Reference and User’s Guide. VTT Technical Research Centre of Finland, 2009 | 374 | 2009 |
Fire Dynamics Simulator (Version 5), Technical Reference Guide, Volume 1: Mathematical Model K McGrattan, S Hostikka, J Floyd, H Baum, R Rehm, W Mell, R McDermott NIST Special Publication 1018 (5), 2010 | 243 | 2010 |
Counterflow model for agent-based simulation of crowd dynamics S Heliövaara, T Korhonen, S Hostikka, H Ehtamo Building and Environment 48, 89-100, 2012 | 154 | 2012 |
Computational fluid dynamics modelling of fire K McGrattan, R McDermott, J Floyd, S Hostikka, G Forney, H Baum International journal of computational fluid dynamics 26 (6-8), 349-361, 2012 | 123 | 2012 |
Numerical modeling of pool fires using LES and finite volume method for radiation S Hostikka, KB McGrattan, A Hamins Fire Safety Science 7, 383-394, 2003 | 117 | 2003 |
Experimental study on flame merging behaviors from two pool fires along the longitudinal centerline of model tunnel with natural ventilation J Ji, H Wan, Z Gao, Y Fu, J Sun, Y Zhang, K Li, S Hostikka Combustion and Flame 173, 307-318, 2016 | 112 | 2016 |
FDS+ Evac: an agent based fire evacuation model T Korhonen, S Hostikka, S Heliövaara, H Ehtamo Pedestrian and Evacuation Dynamics 2008, 109-120, 2010 | 112 | 2010 |
Probabilistic simulation of fire scenarios S Hostikka, O Keski-Rahkonen Nuclear engineering and design 224 (3), 301-311, 2003 | 111 | 2003 |
FDS simulation of fire spread œ comparison of model results with experimental data J Hietaniemi, S Hostikka, J Vaari VTT building and Transfor. Available: http://www2. vtt. fi/inf/pdf …, 2004 | 110 | 2004 |
Quantifying differences between computational results and measurements in the case of a large-scale well-confined fire scenario L Audouin, L Chandra, JL Consalvi, L Gay, E Gorza, V Hohm, S Hostikka, ... Nuclear Engineering and Design 241 (1), 18-31, 2011 | 104 | 2011 |
Improved radiation and combustion routines for a large eddy simulation fire model KB McGrattan, JE Floyd, GP Forney, HR Baum, SA Hostikka Kevin B. McGrattan, J E. Floyd, Glenn P. Forney, Howard R. Baum, Simo A …, 2005 | 100 | 2005 |
Numerical modeling of radiative heat transfer in water sprays S Hostikka, K McGrattan Fire Safety Journal 41 (1), 76-86, 2006 | 99 | 2006 |
Modeling and simulation of liquid pool fires with in-depth radiation absorption and heat transfer T Sikanen, S Hostikka Fire Safety Journal 80, 95-109, 2016 | 97 | 2016 |
Bursting oscillations in electromechanical systems H Simo, P Woafo Mechanics Research Communications 38 (8), 537-541, 2011 | 93 | 2011 |
CFD fire simulation using mixture fraction combustion and finite volume radiative heat transfer JE Floyd, KB McGrattan, S Hostikka, HR Baum Journal of Fire Protection Engineering 13 (1), 11-36, 2003 | 89 | 2003 |
Fire dynamics simulator (Version 5) user's guide MG Kevin, K Bryan, H Simo, F Jason NIST special publication 1019, 2007 | 77 | 2007 |
Fire dynamics simulator users guide NIST special publication 1019 K McGrattan, S Hostikka, R McDermott, J Floyd, C Weinschenk, ... Gaithersburg: National Institute of Standards and Technology, 2013 | 76 | 2013 |