Homepage

Jannis Teunissen


research:start

Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revisionPrevious revision
Next revision
Previous revision
research:start [2022/08/15 09:29] – [Supervision] jannisresearch:start [2023/10/26 14:59] (current) – [Supervision] jannis
Line 3: Line 3:
 ==== Experience and interests ==== ==== Experience and interests ====
  
-My general research interests are scientific computing, computational (plasma) physics and more recently also machine learning / data science.+My general research interests are scientific computing, computational (plasma) physics and more recently also machine learning.
  
 I have developed both particle-in-cell and plasma fluid codes for the simulation I have developed both particle-in-cell and plasma fluid codes for the simulation
Line 17: Line 17:
 === Research projects === === Research projects ===
  
 +//(Past projects in italics)//
 +
 +  * [[https://www.nwo.nl/en/news/two-ppp-consortia-will-kick-improving-cyber-physical-systems|REGENERATE: Reliable Next Generation Actuation Systems]] (NWO KIC project)
   * [[https://www.cwi.nl/news/2019/technology-grant-for-plasma-for-plants-project|Plasma for Plants (TTW)]] (#17183)   * [[https://www.cwi.nl/news/2019/technology-grant-for-plasma-for-plants-project|Plasma for Plants (TTW)]] (#17183)
-  * [[https://www.narcis.nl/research/RecordID/OND1362478|Let CO2 spark! (TTW)]] (#15052) 
   * [[https://www.cwi.nl/news/2018/technology-grant-awarded-to-optimize-plasma-assisted-combustion|Plasma assisted combustion (TTW)]] (#16480)   * [[https://www.cwi.nl/news/2018/technology-grant-awarded-to-optimize-plasma-assisted-combustion|Plasma assisted combustion (TTW)]] (#16480)
-  * [[http://www.aida-space.eu/|AIDA (H2020 - 776262)]] [[https://cordis.europa.eu/project/id/776262|EU info]] + 
-  * [[https://projectescape.eu/|ESCAPE (H2020 - 824064)]] [[https://cordis.europa.eu/project/id/824064|EU info]]+ 
 +  //[[https://www.narcis.nl/research/RecordID/OND1362478|Let CO2 spark! (TTW)]] (#15052)// 
 +  * //[[http://www.aida-space.eu/|AIDA (H2020 - 776262)]] [[https://cordis.europa.eu/project/id/776262|EU info]]// 
 +  * //[[https://projectescape.eu/|ESCAPE (H2020 - 824064)]] [[https://cordis.europa.eu/project/id/824064|EU info]]//
  
 ==== Supervision ==== ==== Supervision ====
Line 29: Line 34:
 === Postdocs === === Postdocs ===
  
-  * Ajay Tiwari+  * //Ajay Tiwari//
   * //[[https://huanwinter.github.io/|Andong Hu]]//   * //[[https://huanwinter.github.io/|Andong Hu]]//
  
-(In collaboration with [[https://ecamporeale.github.io/|Enrico Camporeale]])+//(In collaboration with [[https://ecamporeale.github.io/|Enrico Camporeale]])//
  
 === PhD students === === PhD students ===
  
-I co-supervise the following PhD students together with [[https://homepages.cwi.nl/~ebert/|Ute Ebert]]:+(co-)supervise(d) the following PhD students together with [[https://homepages.cwi.nl/~ebert/|Ute Ebert]]:
  
-  * Hemaditya Malla+  * Hemaditya Malla (daily supervisor)
   * Dennis Bouwman   * Dennis Bouwman
-  * Andy Martinez +  * Baohong Guo (daily supervisor) 
-  * Baohong Guo +  * Xiaoran Li (daily supervisor) 
-  * Xiaoran Li +  * Zhen Wang (daily supervisor) 
-  * Zhen Wang+ 
 +  * //Andy Martinez//
  
 === PhD commitee member === === PhD commitee member ===
  
-  * Alejandro Malagon (University of Granada+  * Hani Francisco (2023, TU Eindhoven
-  * Shahriar Mirpour (TU Eindhoven+  * Brecht Laperre (2022, KU Leuven
-  * Andy Martinez (TU Eindhoven) +  * Andy Martinez (2022, TU Eindhoven) 
-  * Brecht Laperre (KU Leuven)+  * Alejandro Malagon (2021, University of Granada) 
 +  * Shahriar Mirpour (2021, TU Eindhoven) 
  
 === MSc / BSc students === === MSc / BSc students ===
Line 58: Line 66:
   * //Stijn van Deutekom// (2020, TU/e BSc)   * //Stijn van Deutekom// (2020, TU/e BSc)
  
-==== Ideas for (small) projects ====+==== Ideas for research projects ====
  
-A (very!) incomplete list of research ideas, some of which are suitable for student projects:+Examples of research/project ideas:
  
-  * Using machine learning to create a heuristic simple model from a more complex one (for example going from a particle-in-cell to a fluid model)+  * Simulating incompressible flow with the Afivo framework 
 +  * Exploring hybrid OpenMP/MPI parallelization for AMR frameworks
   * Solving plasma fluid equations implicitly. In particular, what is a good preconditioner?   * Solving plasma fluid equations implicitly. In particular, what is a good preconditioner?
-  * Improving the convergence rate of Monte Carlo particle swarm simulations in low electric fields+  * Improving the convergence rate of Monte Carlo particle swarm simulations in low electric fields. One idea is to limit the drift in electron momentum due to collisions.
   * Coupling explicit and implicit time integration for plasma fluid models   * Coupling explicit and implicit time integration for plasma fluid models
-  * Coupling stiff chemistry to simulations with AMR (adaptive mesh refinement), where the chemistry can be evaluated at coarser resolution and perhaps partially implicitly. 
   * Performing large scale 3D simulations of [[https://en.wikipedia.org/wiki/Sprite_(lightning)|sprite]] formation   * Performing large scale 3D simulations of [[https://en.wikipedia.org/wiki/Sprite_(lightning)|sprite]] formation
   * Coupling particle and fluid models in energy space, for the study of [[https://en.wikipedia.org/wiki/Runaway_electrons|runaway electron]] production in electric discharges.   * Coupling particle and fluid models in energy space, for the study of [[https://en.wikipedia.org/wiki/Runaway_electrons|runaway electron]] production in electric discharges.
   * Extending the discharge model comparison of this [[http://dx.doi.org/10.1088/0963-0252/24/6/065002|paper]] to other fluid models   * Extending the discharge model comparison of this [[http://dx.doi.org/10.1088/0963-0252/24/6/065002|paper]] to other fluid models
-  * Using DSMC (or similar particle-based simulations) to evaluate (and improve?) the behavior of continuum hydrodynamics schemes at low pressures/densities +
-  * Exploring methods to make conventional hydrodynamics schemes more robust (i.e., avoiding negative pressures)+