MMC-LES Modellierung der Flammensynthese von Silika-Nanopartikeln

Forschungsprojekt: MMC-LES Modellierung der Flammensynthese von Silika-Nanopartikeln

Related publications

  1. 2021

    1. G. Neuber et al., “Sparse-Lagrangian PDF Modelling of Silica Synthesis from Silane Jets in Vitiated Co-flows with Varying Inflow Conditions,” Flow, Turbul. Combust., vol. 106, pp. 1167–1194, 2021, doi: 10.1007/s10494-020-00140-2.
  2. 2019

    1. G. Neuber et al., “Sparse-Lagrangian PDF modelling of particulate flame synthesis in turbulent reacting flows,” in Proc. 11th Medit. Combust. Symp., Tenerife, Spain, 2019.
    2. G. Neuber et al., “Joint experimental and numerical study of silica particulate synthesis in a turbulent reacting jet,” Proc. Combust. Inst., vol. 37, pp. 1213–1220, 2019, [Online]. Available: https://www.sciencedirect.com/science/article/pii/S1540748918302578
  3. 2018

    1. S. Galindo-Lopez et al., “A Stochastic Multiple Mapping Conditioning Computational Model in OpenFOAM for Turbulent Combustion,” Computers & Fluids, vol. 172, pp. 410–425, 2018, [Online]. Available: https://www.sciencedirect.com/science/article/pii/S0045793018301877
  4. 2017

    1. S. Vo, A. Kronenburg, O. T. Stein, and M. J. Cleary, “Multiple mapping conditioning for silica nanoparticle nucleation in turbulent flows,” Proc. Combust. Inst., vol. 36, pp. 1089–1097, 2017, doi: https://doi.org/10.1016/j.proci.2016.08.088.
    2. S. Vo, A. Kronenburg, O. T. Stein, and M. J. Cleary, “Large eddy simulation of nanoparticle nucleation using multiple mapping conditioning,” in Proc. 8th Europ. Combust. Meeting, Dubrovnik, Croatia, 2017.

Ihre Ansprechpartner

Dieses Bild zeigt Andreas Kronenburg

Andreas Kronenburg

Univ.-Prof. Dr.

Institutsleitung, Studiendekan WASTE

Dieses Bild zeigt Gregor Neuber

Gregor Neuber

Dr.-Ing.
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