A PhD position on Multiscale Mechanical and Performance Modelling of Solid Oxice Electrolyser Cells and Stacks is offered by the SEED lab. develop an electrochemical + thermomechanical cell and stack model of the large active area SOEC technology developed by project partner, TNO. The model will need to incorporate gas manifolds and hot-box design into a hierarchical modelling methodology developed previously for the integrated multiscale modelling of SOEC cells and stacks.
You will use the model to study the effect of various design factors such as electrode microstructure, layer thickness, and active area at the cell level, and rib and channel width for interconnect design, flow distribution and pressure drop through the gas manifolds, and sufficient mechanical stress on the interconnect and cells for effective sealing, at the stack level.
Are you interested and want more information? You can check out the SEED website to find more information regarding this PhD position on multiscale modelling.
More recent news
Fri 22 Aug 2025Janek Betting (CPM) on Innovate and React podcast
Mon 18 Aug 2025New article published: Plasma Catalysis: What is needed to create synergy?
Mon 21 Jul 2025New paper published: Hydroxylamine: an overseen intermediate that brings into question nitrogen selectivity in metal-catalyzed nitrate and nitrite reduction
Tue 10 Jun 2025Prof. Jimmy Faria receives best teacher award for CSE program 2025
Mon 24 Feb 2025PhD position on Operando Characterisation of Solid Oxide and Protonic Ceramic Electrolysis Cells
