Pieter Reyniers
- Work address
-
Technologiepark Zwijnaarde 125
9052 Zwijnaarde - Pieter.Reyniers@UGent.be
- ORCID iD
-
0000-0001-6794-6106
Show
Sort by
-
Assessing the CO2 emission reduction potential of steam cracking furnace innovations via computational fluid dynamics : from high-emissivity coatings, over coil modifications to firing control
-
Reduction of NOx emissions via CFD-based optimization of a steam cracking firebox
-
Steam cracking coke properties and their influence on furnace run length predictions : experimental and modeling study
-
Computational fluid dynamics‐based optimization of dimpled steam cracking reactors for reduced CO2 emissions
-
Pyrometer-based control of a steam cracking furnace
-
Large eddy simulation of tubular reactors with spherical dimples
-
- Conference Paper
- C3
- open access
Process intensification in a gas-solid vortex reactor
-
Computational fluid dynamics-based study of a high emissivity coil coating in an industrial steam cracker
-
- Conference Paper
- C3
- open access
Computational fluid dynamics-based study of the steam cracking process using a Hybrid 3D-1D approach
-
- PhD Thesis
- open access
Intensification of chemical processes by advanced multiscale simulations
(2018)