1 |
Experimental characterization and modeling of boundary conditions and flame spread dynamics observed in the UL-94V test Mccoy CG, Stoliarov SI Combustion and Flame, 225, 214, 2021 |
2 |
Comparative analysis of pyrolysis and combustion of bisphenol A polycarbonate and poly(ether ether ketone) using two-dimensional modeling: A relation between thermal transport and the physical structure of the intumescent char Swanna JD, Dinga Y, Stoliarova SI Combustion and Flame, 212, 469, 2020 |
3 |
Feeding characteristics of a novel double-bin pneumatic feeder of biomass particles Li P, Wang NN, Si H, Chang JM Powder Technology, 363, 735, 2020 |
4 |
Modelling and numerical simulation of n-heptane pyrolysis coking characteristics in a millimetre-sized tube reactor Wang XH, Song QS, Wu Y, Li X, Li T, Zeng XJ Combustion and Flame, 201, 44, 2019 |
5 |
Pyrolysis model development for a polymeric material containing multiple flame retardants: Relationship between heat release rate and material composition Ding Y, Stoliarov SI, Kraemer RH Combustion and Flame, 202, 43, 2019 |
6 |
Characterization of pyrolysis and combustion of rigid poly(vinyl chloride) using two-dimensional modeling Swann JD, Ding Y, Stoliarov SI International Journal of Heat and Mass Transfer, 132, 347, 2019 |
7 |
Pyrolysis Model for Predicting the Heat Release Rate of Birch Wood Hostikka S, Matala A Combustion Science and Technology, 189(8), 1373, 2017 |
8 |
Development of a numerical model for biomass packed bed pyrolysis based on experimental validation Borello D, Cedola L, Frangioni GV, Meloni R, Venturini P, De Filippis P, de Caprariis B Applied Energy, 164, 956, 2016 |
9 |
Experiments and modeling of fixed-bed debarking residue pyrolysis: The effect of fuel bed properties on product yields Boriouchkine A, Sharifi V, Swithenbank J, Jamsa-Jounela SL Chemical Engineering Science, 138, 581, 2015 |
10 |
Modeling of kraft lignin pyrolysis based on bond dissociation and fragments coupling Guo XJ, Liu ZY, Liu QY, Shi L Fuel Processing Technology, 135, 133, 2015 |