Experimental and numerical evaluation of the influence of the soot yield on the visibility in smoke in CFD analysis W Węgrzyński, G Vigne Fire Safety Journal 91, 389-398, 2017 | 63 | 2017 |
KRESNIK: A top-down, statistical approach to understand the fire performance of building facades using standard test data M Bonner, W Wegrzynski, BK Papis, G Rein Building and Environment 169, 106540, 2020 | 58 | 2020 |
Air curtain as a barrier for smoke in case of fire: Numerical modelling G Krajewski, W Węgrzyński Bulletin of the polish academy of sciences technical sciences, 145-153-145-153, 2015 | 55 | 2015 |
Bezpieczeństwo pożarowe budynków wysokich i wysokościowych.[W:] A. Halicka, Budownictwo na obszarach zurbanizowanych P Sulik, B Sędłak, P Turkowski, W Węgrzyński Nauka, praktyka, perspektywy, Politechnika Lubelska 2014, 105-120, 2014 | 52* | 2014 |
The philosophy of fire safety engineering in the shaping of civil engineering development W Węgrzyński, P Sulik Bulletin of the polish academy of sciences. Technical sciences 64 (4), 2016 | 44 | 2016 |
Fire experiment inside a very large and open-plan compartment: x-ONE E Rackauskaite, M Bonner, F Restuccia, N Fernandez Anez, ... Fire Technology, 1-35, 2021 | 40 | 2021 |
Influence of wind on natural smoke and heat exhaust system performance in fire conditions W Węgrzyński, G Krajewski Journal of Wind Engineering and Industrial Aerodynamics 164, 44-53, 2017 | 40 | 2017 |
Wind and Fire Coupled Modelling—Part I: Literature Review W Węgrzyński, T Lipecki Fire Technology, 1-38, 2018 | 37 | 2018 |
A systematic experimental study on biochar-cementitious composites: Towards carbon sequestration P Sikora, P Woliński, M Chougan, S Madraszewski, W Węgrzyński, ... Industrial Crops and Products 184, 115103, 2022 | 36 | 2022 |
Heart rate variability and accelerometry as classification tools for monitoring perceived stress levels—A pilot study on firefighters M Meina, E Ratajczak, M Sadowska, K Rykaczewski, J Dreszer, B Bałaj, ... Sensors 20 (10), 2834, 2020 | 34 | 2020 |
Maximizing the retention time of inert gases used in fixed gaseous extinguishing systems P Kubica, L Czarnecki, S Boroń, W Węgrzyński Fire Safety Journal 80, 1-8, 2016 | 30 | 2016 |
Systemy wentylacji pożarowej garaży W Węgrzyński, G Krajewski Projektowanie, ocena, odbiór 493, 2015, 2015 | 27 | 2015 |
Transient characteristic of the flow of heat and mass in a fire as the basis for optimized solution for smoke exhaust W Węgrzyński International Journal of Heat and Mass Transfer 114, 483-500, 2017 | 26 | 2017 |
Wind and Fire Coupled Modelling—Part II: Good Practice Guidelines W Węgrzyński, T Lipecki, G Krajewski Fire Technology, 1-43, 2018 | 25 | 2018 |
The discrepancies in energy balance in furnace testing, a bug or a feature? W Węgrzyński, P Turkowski, P Roszkowski Fire and Materials 44 (3), 311-322, 2020 | 23 | 2020 |
Combined wind engineering, smoke flow and evacuation analysis for a design of a natural smoke and heat ventilation system W Wojciech, K Grzegorz Procedia Engineering 172, 1243-1251, 2017 | 23 | 2017 |
Review and validation of the current smoke plume entrainment models for large-volume buildings G Vigne, C Gutierrez-Montes, A Cantizano, W Węgrzyński, G Rein Fire Technology 55 (3), 789-816, 2019 | 20 | 2019 |
Large-scale enclosure fire experiments adopting CLT slabs with different types of polyurethane adhesives: genesis and preliminary findings D Hopkin, W Węgrzyński, M Spearpoint, I Fu, H Krenn, T Sleik, C Gorska, ... Fire 5 (2), 39, 2022 | 19 | 2022 |
Experimental and computational study of smoke dynamics from multiple fire sources inside a large-volume building G Vigne, W Węgrzyński, A Cantizano, P Ayala, G Rein, ... Building simulation 14, 1147-1161, 2021 | 19 | 2021 |
Hand Calculations, Zone Models and CFD – Areas of Disagreement and Limits of Application in Practical Fire Protection Engineering P Tofiło, W Węgrzyński, R Porowski 11th Conference on Performance-Based Codes and Fire Safety Design Methods, 2016 | 19 | 2016 |