Simulation-based investigation of tar formation in after-treatment systems for biomass gasification
Even though biomass gasification remains a promising technology regarding de-centralized sustainable energy supply, its main limitations have never been fully overcome. In order to tackle two deficiencies and to increase the understanding of thermodynamic and thermokinetic producer gas phase phenomena within the after-treatment zones, a numerical system dynamic model has been created and recommendations were provided. The numerical model has been included in the cloud-computing platform KaleidoSim. Thus, a wider range of process parameter combinations could be investigated in reasonable time.
Official Citation: Boiger, Gernot Kurt; Buff, Vincent ; Sharman, Darren ; Boldrini, Marlon ; Lienhard, Viktor; Drew, Dominic, 2020. Simulation-based investigation of tar formation in after-treatment systems for biomass gasification . Biomass Conversion and Biorefinery. 11 (1), pp. 39-56. Available from: https://doi.org/10.1007/s13399-020-00915-7
Ähnliche Beiträge

Massive Simultaneous Cloud Computing (MSCC) for Multiphysics – Simulation applications
The Massive Simultaneous Cloud Computing concept allows appliers and developers [...]

Multiphysics solver for coating processes in terms of MSCC
This talk will demonstrate simulation software advances focusing novel Kaleidosim [...]

Multiphysics Eulerian-Lagrangian Electrostatic Particle Spray- And Deposition Model for OpenFOAM® and KaleidoSim® Cloud-Platform
A finite volume based Eulerian-Lagrangian model has been created within [...]
