Prosjekter
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Ekspertise
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Flere publikasjoner
- On efficient modelling of radical production in cavitation assisted reactors
- The future of fuels: Uncertainty quantification study of mid-century ammonia and methanol production costs
- Thermochemical Energy Storage: an approach to integration pathways
- Developing a novel approach for modelling particle-wall heat transfer in fluidized bed reactors for CO2 capture
- Gas switching technology: Economic attractiveness for chemical looping applications and scale up experience to 50 kWth Les publikasjonen
- Energy-Intensive Industry as a Practical and Cost-Effective Vector for Blue Hydrogen Exports – A Norwegian Case Study
- Exergy Analysis of Gas Switching Chemical Looping IGCC Plants Les publikasjonen
- CFD Simulations of an Additional H2 Combustor for Improving Efficiency in Chemical Looping Combustion Power Plants Les publikasjonen
- Proceedings from the 14th International Conference on CFD in Oil & Gas, Metallurgical and Process Industries, SINTEF, Trondheim, Norway, October 12–14, 2020 Les publikasjonen
- Integration of gas switching combustion in a humid air turbine cycle for flexible power production from solid fuels with near‐zero emissions of CO2 and other pollutants
Annen formidling
- A hybrid Eulerian-Langrangian CFD model for predicting cavitation intensity
- Thermochemical Energy Storage: an approach to integration pathways
- Developing a novel approach for modelling particle-wall heat transfer in fluidized bed reactors for CO2 capture
- Energy-intensive Industry as a Practical and Cost-effective Vector for Blue Hydrogen Exports - A Norwegian Case Study
- An opensource tool for filtered two-fluid simulations of fluidized gas-particle flows
- Assessing the generality of a computational fluid dynamics model for simulating the flame spray synthesis of ZrO2 nanoparticles
- Assessment of the generality of computational fluid dynamics models for simulating flame spray synthesis of nanoparticles
- Integration of Gas Switching Chemical Looping Technology in IGCC plants for Inherent CO2 Capture.
- Hydrogen: Key to flexible energy systems with CO2 capture to balance variable renewables.
- Corrigendum to "The sensitivity of filtered Two Fluid Model to the underlying resolved simulation setup" [Powder Technol. 316 (2017) 265–277]