The focus is set on modeling interfacial reactions with decisive importance for the function and lifetime of products in electromobility and regenerative energy technology.
- Youll be part of our team and derive and implement a strategy for the crossscale description of the interaction of multiphase fluids and metals with a focus on electrochemistry and fluid dynamics.
- Youll develop and applicate 2D/3D multiphysics models using numerical simulations scripting and programming.
- Furthermore youll combine physicsbased models with databased approaches.
- Youll parameterize and validate models with available data using multivariate statistics.
- Youll work in international teams and perform necessary development / implementation to accomplish the tasks.
- Publish research findings in reputable journals and conferences.
Required skills:
- Proven experience in the field of modeling of corrosion phenomena at interfaces
- Profound knowledge in multiphysics simulation as well as computational fluid dynamics (CFD) preferably with OpenFOAM and/or Comsol
- Profound and broad knowledge in numerical methods in engineering
- Sound understanding of Linear algebra
- Excellent coding skills in Python and C including version control (e.g. Git) software testing linting
- Competent handling of statistical data analysis and application of machine learning techniques preferably with Python (ideally PyTorch) and C
- Knowledge in homogenization and model order reduction methods is desirable.
- Enthusiastic and curious to work for a crossdomain task with scientific complexity
Preferable skills:
- Experience with simulation tools: Matlab and Simulink and Ansys will be added advantage.
- Familiarity with high performance computing will be added advantage
Qualifications :
MS/M.Tech PhD from top Indian institutes (IITs IIITs IISc etc.) or from top international institutes with good track record of research publications related to computational engineering
Additional Information :
3 years
Remote Work :
No
Employment Type :
Fulltime