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Research outputs

Selected research outputs

  1. Lattice-Boltzmann LES modelling of a full-scale, biogas-mixed anaerobic digester (Journal article - 2024)
  2. OpenLB-Open source lattice Boltzmann code (Journal article - 2021)
  3. A CFD strategy to retrofit an anaerobic digester to improve mixing performance in wastewater treatment (Journal article - 2020)
  4. Euler-Lagrange CFD modelling of unconfined gas mixing in anaerobic digestion (Journal article - 2015)
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2026

GLoOD Paper01 Supporting Evidence

Dapelo, D., Lockett, S., & Bridgeman, J. (n.d.). GLoOD Paper01 Supporting Evidence.

Dataset

Quantifying wall effects on spherical particle settling with the Lattice Boltzmann method

Chodankar, A. D., Poirier, M., Dekarske, J., Baggett, W., Dapelo, D., Mcdaniel, D., & Sukop, M. C. (2026). Quantifying wall effects on spherical particle settling with the Lattice Boltzmann method. Progress in Computational Fluid Dynamics, 26(7), 1-12. doi:10.1504/PCFD.2026.10079012

DOI
10.1504/PCFD.2026.10079012
Journal article

Quantifying wall effects on spherical particle settling with the Lattice Boltzmann method

Chodankar, A. D., Poirier, M., Dekarske, J., Baggett, W., Dapelo, D., McDaniel, D., & Sukop, M. C. (2026). Quantifying wall effects on spherical particle settling with the Lattice Boltzmann method. PROGRESS IN COMPUTATIONAL FLUID DYNAMICS, 26(7), 1-12. doi:10.1504/PCFD.2026.154218

DOI
10.1504/PCFD.2026.154218
Journal article

2025

A hybrid Lattice-Boltzmann model for hydro-electrochemical modeling and sensitivity analysis of crystallization potential in nanoporous media. Part I: simulation model

Bukreev, F., Kummerlander, A., Jessberger, J., Teutscher, D., Ito, S., Simonis, S., . . . Krause, M. J. (2025). A hybrid Lattice-Boltzmann model for hydro-electrochemical modeling and sensitivity analysis of crystallization potential in nanoporous media. Part I: simulation model. ENGINEERING WITH COMPUTERS, 41(6), 4587-4603. doi:10.1007/s00366-025-02216-x

DOI
10.1007/s00366-025-02216-x
Journal article

A hybrid Lattice-Boltzmann model for hydro-electrochemical modeling and sensitivity analysis of crystallization potential in nanoporous media. Part II: application to the identification and quantification of influencing factors of phosphate saturation

Bukreev, F., Kummerlander, A., Jessberger, J., Teutscher, D., Ito, S., Simonis, S., . . . Krause, M. J. (2025). A hybrid Lattice-Boltzmann model for hydro-electrochemical modeling and sensitivity analysis of crystallization potential in nanoporous media. Part II: application to the identification and quantification of influencing factors of phosphate saturation. ENGINEERING WITH COMPUTERS, 41(6), 4605-4623. doi:10.1007/s00366-025-02217-w

DOI
10.1007/s00366-025-02217-w
Journal article

2024

OpenLB User Guide: Associated with Release 1.7 of the Code

Kummerländer, A., Bingert, T., Bukreev, F., Czelusniak, L. E., Dapelo, D., Englert, S., . . . Krause, M. J. (2024). OpenLB User Guide: Associated with Release 1.7 of the Code.

Journal article

2023

2021

2020

2019

2018

2017

Influence of DC electric field upon the production of oil-in-water-in-oil double emulsions in upwards mm-scale channels at low electric field strength

Alberini, F., Dapelo, D., Enjalbert, R., Van Crombrugge, Y., & Simmons, M. J. H. (2017). Influence of DC electric field upon the production of oil-in-water-in-oil double emulsions in upwards mm-scale channels at low electric field strength. EXPERIMENTAL THERMAL AND FLUID SCIENCE, 81, 265-276. doi:10.1016/j.expthermflusci.2016.10.023

DOI
10.1016/j.expthermflusci.2016.10.023
Journal article

2015

Euler-Lagrange CFD modelling of unconfined gas mixing in anaerobic digestion

Dapelo, D., Alberini, F., & Bridgeman, J. (2015). Euler-Lagrange CFD modelling of unconfined gas mixing in anaerobic digestion. WATER RESEARCH, 85, 497-511. doi:10.1016/j.watres.2015.08.042

DOI
10.1016/j.watres.2015.08.042
Journal article

Computational fluid dynamics modelling of unconfined gas mixing of wastewater sludge In a full scale anaerobic digester

Dapelo, D., & Bridgeman, J. (2015). Computational fluid dynamics modelling of unconfined gas mixing of wastewater sludge In a full scale anaerobic digester. In Civil Comp Proceedings.

Conference Paper

Computational fluid dynamics modelling of unconfined gas mixing of wastewater sludge in a full scale anaerobic digester

Dapelo, D., & Bridgeman, J. (2015). Computational fluid dynamics modelling of unconfined gas mixing of wastewater sludge in a full scale anaerobic digester. In Civil Comp Proceedings Vol. 108.

Conference Paper