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Qingang Xiong
Qingang Xiong
Senior Scientist, General Motors, USA
Verified email at gm.com
Title
Cited by
Cited by
Year
A Review of Recent Advances in Biomass Pyrolysis
G Wang, Y Dai, H Yang, Q Xiong, K Wang, J Zhou, Y Li, S Wang
Energy & Fuels 34 (12), 15557–15578, 2020
2942020
OpenFOAM for computational fluid dynamics
G Chen, Q Xiong, PJ Morris, EG Paterson, A Sergeev, Y Wang
Not. AMS 61 (4), 354-363, 2014
2132014
Overview of computational fluid dynamics simulation of reactor-scale biomass pyrolysis
Q Xiong, Y Yang, F Xu, Y Pan, J Zhang, K Hong, G Lorenzini, S Wang
ACS Sustainable Chemistry & Engineering 5 (4), 2783-2798, 2017
1702017
CFD study of heat transfer and fluid flow in a parabolic trough solar receiver with internal annular porous structure and synthetic oil–Al2O3 nanofluid
MV Bozorg, MH Doranehgard, K Hong, Q Xiong
Renewable Energy 145, 2598-2614, 2020
1662020
Meso-scale oriented simulation towards virtual process engineering (VPE)—the EMMS paradigm
W Ge, W Wang, N Yang, J Li, M Kwauk, F Chen, J Chen, X Fang, L Guo, ...
Chemical Engineering Science 66 (19), 4426-4458, 2011
1592011
Large-scale DNS of gas–solid flows on Mole-8.5
Q Xiong, B Li, G Zhou, X Fang, J Xu, J Wang, X He, X Wang, L Wang, ...
Chemical Engineering Science 71, 422-430, 2012
1502012
Numerical analysis of mixed convection of two-phase non-Newtonian nanofluid flow inside a partially porous square enclosure with a rotating cylinder
M Siavashi, K Karimi, Q Xiong, MH Doranehgard
Journal of Thermal Analysis and Calorimetry 137 (1), 267–287, 2019
1402019
Development of a generalized numerical framework for simulating biomass fast pyrolysis in fluidized-bed reactors
Q Xiong, SC Kong, A Passalacqua
Chemical Engineering Science 99, 305-313, 2013
1352013
MHD enhanced nanofluid mediated heat transfer in porous metal for CPU cooling
A Izadi, M Siavashi, H Rasam, Q Xiong
Applied Thermal Engineering 168, 114843, 2020
1292020
Modeling effects of operating conditions on biomass fast pyrolysis in bubbling fluidized bed reactors
Q Xiong, S Aramideh, SC Kong
Energy & Fuels 27 (10), 5948-5956, 2013
1272013
State-of-the-art review of nanofluids in solar collectors: A review based on the type of the dispersed nanoparticles
Q Xiong, A Hajjar, B Alshuraiaan, M Izadi, S Altnji, SA Shehzad
Journal of Cleaner Production 310, 127528, 2021
1252021
A comprehensive review on the application of hybrid nanofluids in solar energy collectors
Q Xiong, S Altnji, T Tayebi, M Izadi, A Hajjar, B Sundén, LKB Li
Sustainable Energy Technologies and Assessments 47, 101341, 2021
1222021
Numerical simulation of biomass fast pyrolysis in an auger reactor
S Aramideh, Q Xiong, SC Kong, RC Brown
Fuel 156, 234-242, 2015
1192015
Modeling of cetane number of biodiesel from fatty acid methyl ester (FAME) information using GA-, PSO-, and HGAPSO-LSSVM models
A Bemani, Q Xiong, A Baghban, S Habibzadeh, AH Mohammadi, ...
Renewable Energy 150, 924-934, 2020
1162020
Molecular dynamics simulation of the interfacial thermal resistance between phosphorene and silicon substrate
J Zhang, Y Hong, M Liu, Y Yue, Q Xiong, G Lorenzini
International Journal of Heat and Mass Transfer 104, 871-877, 2017
1032017
Enhancing the efficiency of a symmetric flat-plate solar collector via the use of rutile TiO2-water nanofluids
M Moravej, MV Bozorg, Y Guan, LKB Li, MH Doranehgard, K Hong, ...
Sustainable Energy Technologies and Assessments 40, 100783, 2020
1012020
Impingement jet hydrogen, air and CuH2O nanofluid cooling of a hot surface covered by porous media with non-uniform input jet velocity
A Izadi, M Siavashi, Q Xiong
International Journal of Hydrogen Energy 44 (30), 15933-15948, 2019
982019
Recent Advances in Heavy Oil Upgrading using Dispersed Catalysts
T Al-Attas, SA Ali, MH Zahir, Q Xiong, SA Al-Bogami, ZO Malaibari, ...
Energy & Fuels 33 (9), 7917-7949, 2019
912019
Modeling effects of interphase transport coefficients on biomass pyrolysis in fluidized beds
Q Xiong, SC Kong
Powder Technology 262, 96-105, 2014
912014
SPH method for two-fluid modeling of particle–fluid fluidization
Q Xiong, L Deng, W Wang, W Ge
Chemical Engineering Science 66 (9), 1859-1865, 2011
902011
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