Crossref Citations
This Book has been
cited by the following publications. This list is generated based on data provided by Crossref.
Frances, Christine
and
Liné, Alain
2014.
Comminution process modeling based on the monovariate and bivariate direct quadrature method of moments.
AIChE Journal,
Vol. 60,
Issue. 5,
p.
1621.
De Bona, Jeremias
Lanotte, Alessandra S.
and
Vanni, Marco
2014.
Internal stresses and breakup of rigid isostatic aggregates in homogeneous and isotropic turbulence.
Journal of Fluid Mechanics,
Vol. 755,
Issue. ,
p.
365.
Fox, Rodney O.
2014.
On multiphase turbulence models for collisional fluid–particle flows.
Journal of Fluid Mechanics,
Vol. 742,
Issue. ,
p.
368.
Tenneti, Sudheer
and
Subramaniam, Shankar
2014.
Particle-Resolved Direct Numerical Simulation for Gas-Solid Flow Model Development.
Annual Review of Fluid Mechanics,
Vol. 46,
Issue. 1,
p.
199.
Fox, Rodney O.
2014.
Stochastic Methods in Fluid Mechanics.
Vol. 548,
Issue. ,
p.
87.
Guichard, Romain
Belut, Emmanuel
Nimbert, Nicolas
and
Tanière, Anne
2014.
Evaluation of a Moments-Based Formulation for the Transport and Deposition of Small Inertia Aerosols.
The Journal of Computational Multiphase Flows,
Vol. 6,
Issue. 4,
p.
407.
Yuan, Cansheng
Kong, Bo
Passalacqua, Alberto
and
Fox, Rodney O.
2014.
An extended quadrature‐based mass‐velocity moment model for polydisperse bubbly flows.
The Canadian Journal of Chemical Engineering,
Vol. 92,
Issue. 12,
p.
2053.
Renze, Peter
Buffo, Antonio
Marchisio, Daniele L.
and
Vanni, Marco
2014.
Simulation of Coalescence, Breakup, and Mass Transfer in Polydisperse Multiphase Flows.
Chemie Ingenieur Technik,
Vol. 86,
Issue. 7,
p.
1088.
Sung, Yonduck
Raman, Venkat
Koo, Heeseok
Mehta, Maulik
and
Fox, Rodney O.
2014.
Large‐eddy simulation modeling of turbulent flame synthesis of titania nanoparticles using a bivariate particle description.
AIChE Journal,
Vol. 60,
Issue. 2,
p.
459.
Karimi, Mohsen
and
Marchisio, Daniele L.
2015.
A Baseline Model for the Simulation of Polyurethane Foams via the Population Balance Equation.
Macromolecular Theory and Simulations,
Vol. 24,
Issue. 4,
p.
291.
Vonka, Michal
and
Soos, Miroslav
2015.
Characterization of liquid‐liquid dispersions with variable viscosity by coupled computational fluid dynamics and population balances.
AIChE Journal,
Vol. 61,
Issue. 8,
p.
2403.
Ashraf Ali, B.
Börner, M.
Peglow, M.
Janiga, G.
Seidel-Morgenstern, A.
and
Thévenin, D.
2015.
Coupled Computational Fluid Dynamics–Discrete Element Method Simulations of a Pilot-Scale Batch Crystallizer.
Crystal Growth & Design,
Vol. 15,
Issue. 1,
p.
145.
Xue, Qingluan
and
Fox, Rodney O.
2015.
Computational Modeling of Biomass Thermochemical Conversion in Fluidized Beds: Particle Density Variation and Size Distribution.
Industrial & Engineering Chemistry Research,
Vol. 54,
Issue. 16,
p.
4084.
Ouyang, Zailong
Bao, Di
Zhang, Xin
Dong, Haifeng
Yan, Ruiyi
Zhang, Xiangping
and
Zhang, Suojiang
2015.
Numerical simulation of CO2-ionic liquid flow in a stirred tank.
Science China Chemistry,
Vol. 58,
Issue. 12,
p.
1918.
FERREIRA, GABRIEL GONÇALVES DA SILVA
LAGE, PAULO LARANJEIRA DA CUNHA
and
SILVA, LUIZ FERNANDO LOPES RODRIGUES
2015.
AVALIAÇÃO DO MÉTODO DQST NA SOLUÇÃO DA EQUAÇÃO DE BALANÇO POPULACIONAL.
p.
653.
Deutschmann, Olaf
2015.
Modeling of the Interactions Between Catalytic Surfaces and Gas-Phase.
Catalysis Letters,
Vol. 145,
Issue. 1,
p.
272.
Lavino, Alessio D.
di Pasquale, Nicodemo
Carbone, Paola
Barresi, Antonello A.
and
Marchisio, Daniele L.
2015.
Simulation of macromolecule self-assembly in solution: A multiscale approach.
Vol. 1693,
Issue. ,
p.
020036.
Nopens, Ingmar
Torfs, Elena
Ducoste, Joel
Vanrolleghem, Peter A.
and
Gernaey, Krist V.
2015.
Population balance models: a useful complementary modelling framework for future WWTP modelling.
Water Science and Technology,
Vol. 71,
Issue. 2,
p.
159.
Morel, Christophe
2015.
Mathematical Modeling of Disperse Two-Phase Flows.
Vol. 114,
Issue. ,
p.
135.
Morel, Christophe
2015.
Mathematical Modeling of Disperse Two-Phase Flows.
Vol. 114,
Issue. ,
p.
205.