Sort by
Refine Your Search
-
Category
-
Employer
-
Field
-
caprock are situated below or in the CO2 gas hydrate stability zone. The CoolSeal project´s overall objective is to provide an experimental and numerical framework to predict CO2 gas hydrate self-sealing in
-
performance, safety, and scalability. The project may involve both experimental investigations and numerical simulations, depending on the candidate’s background and the evolving needs of the research
-
modeling formation dry-out and salt precipitation during CO2 storage. The candidate will work on developing numerical models for salt precipitation at pore- to continuum-scale, with special focus on how
-
01.10.2025. It is a condition of employment that the master's degree has been awarded. Documented experience from experimental investigations of flame acceleration and detonation phenomena and/or numerical
-
of flame acceleration and detonation phenomena and/or numerical modelling and simulation of three-dimensional turbulent reacting flows in a CFD code is a requirement. Applicants must be able to work
-
Ability to actively communicate and co-operate within a larger research team is required. Experience with LINUX environments and analysing large datasets from numerical models is an advantage Experience
-
) and economics (or related fields). Applicants must have experience in one or more of the topics: Model-predictive control Numerical optimization Econometrics Virtual power plants Power systems and/or
-
processes as droplets/condensates wet membrane compartments in cells. Numerical simulations and theoretical membrane models will be developed, aiming to couple viscous interfacial fluid flow, elastic
-
scales affect the extent of salt formation. The project targets modeling formation dry-out and salt precipitation during CO2 storage. The candidate will work on developing numerical models for salt
-
for recyclability or reuse and assessing their environmental impact. Validation and Verification: Validate analytical and numerical simulations to ensure the solutions apply to real-world offshore environments