Sort by
Refine Your Search
-
Listed
-
Country
-
Employer
-
Field
-
using OpenFOAM. The first part of the post is funded by international energy companies. It involves CFD simulations of accidental releases of cryogenic liquid hydrogen, focusing on the evaporation and
-
implementation of a coupled Computational Fluid Dynamics (CFD) and fire dynamics model within the OpenFOAM framework. This model will simulate battery thermal runaway and subsequent fire propagation. The
-
, OpenFOAM, COMSOL). Knowledge of steelmaking or high-temperature industrial processes. To download the full job description and details of this position and submit an electronic application online please
-
and implement computational fluid dynamics (CFD) and fire dynamics models in OpenFOAM tool for battery thermal runaway and fire propagation. • Conduct numerical simulations to investigate
-
implementation of a coupled Computational Fluid Dynamics (CFD) and fire dynamics model within the OpenFOAM framework. This model will simulate battery thermal runaway and subsequent fire propagation. The
-
interactions, and data-driven optimisation—are highly desirable. Experience with relevant CFD tools (e.g. ANSYS Fluent, OpenFOAM, COMSOL). Knowledge of steelmaking or high-temperature industrial processes
-
UrbanMicroclimateFoam, OpenFOAM, WRF/PALM or other similar programs; • Highly motivated individual with capacity to work independently. • Good time management and planning; • Good publication track record; • Some
-
research across thermal-energy storage, heat-transfer systems, and control engineering. This includes CFD/FEA modelling using tools such as ANSYS, COMSOL or OpenFOAM, laboratory experimentation for PCM
-
; Experienced in using environmental simulation tools, such as UrbanMicroclimateFoam, OpenFOAM, WRF/PALM or other similar programs; Highly motivated individual with capacity to work independently. Good time
-
Fluent, CONVERGE, or OpenFOAM, to investigate pollutant formation mechanisms. Identify and quantify formation pathways of key pollutants such as NOₓ, N₂O, CO, and unburned NH₃. Develop insights and propose