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Exploratory study of the impact of the turbulence model on flame extinction with an EDM and EDC/finite-rate approach for a line burner configuration
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A Fully Dynamic Approach For Turbulence and Combustion Modelling: Systematic Assessment Study on Fire Plumes with Variable Heat Release Rate
(2023) -
Sub-grid scale turbulent micro-mixing with infinitely fast chemistry in the context of fire modelling
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Numerical study of the impact of the EDC formulation and finite-rate chemistry mechanisms in CFD simulations of fire plumes
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Flame ignition and extinction modelling using infinitely fast chemistry in large eddy simulations of fire-related reacting flows
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Development of a novel subgrid combustion model for buoyant turbulent diffusion flames
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- Journal Article
- A1
- open access
Analysis of adaptive mesh refinement in a turbulent buoyant helium plume
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- Journal Article
- A1
- open access
Evaluation of OpenFOAM’s discretization schemes used for the convective terms in the context of fire simulations
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- Journal Article
- A1
- open access
Computational analysis of choices in the design of smoke extraction duct systems (SEDS) for compartment fires
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- Conference Paper
- C3
- open access
Preliminary study of chemistry solvers with focus on ignition in the context of turbulent buoyancy-driven reacting flows