This profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of Ottawa directory, so their publications, courses and email address may be missing. Find their university profile.
Latest funding
- $109,500
Propensity for H2 flame wrinkling, acceleration and transition to detonation from side venting, rear venting and interaction with expansion waves
NSERC · 2021 · Principal investigator
- $120,000
Predictability of detonation wave dynamics in gases: experiment and model development
NSERC · 2017 · Principal investigator
- $120,000
Predictability of detonation wave dynamics in gases: experiment and model development
NSERC · 2017 · Principal investigator
Propensity for H2 flame wrinkling, acceleration and transition to detonation from side venting, rear venting and interaction with expansion waves
Principal investigators: Radulescu, Matei MI
Keywords: combustion; detonation; explosion; flame; hydrogen distribution; hydrogen safety; hydrogen storage; ignition; mitigation; shock wave
Predictability of detonation wave dynamics in gases: experiment and model development
Principal investigators: Radulescu, Matei
Predictability of detonation wave dynamics in gases: experiment and model development
Principal investigators: Radulescu, Matei
Predictability of detonation wave dynamics in gases: experiment and model development
Principal investigators: Radulescu, Matei
Keywords: chemical kinetics; compressible flow; detonation waves in gases; high speed photography; hydrodynamic instability; ignition; modelling; non-equilibrium gas dynamics; reactive flow; shock wave
Multi-axis motion systems for surface nanotexturing, micromachining, 3-dimensional structure fabrication, and laser-matter interaction studies.
Principal investigators: Weck, Arnaud
Quantitative assessment and modeling of the propensity for fast flames and transition to detonation in methane (CH4), ethane (C2H6), ethylene (C2H4) and propane (C3H8)
Principal investigators: Radulescu, Matei
""Predictability of detonation wave phenomena: influence of diffusive processes, hydrodynamic instabilities and relaxation effects on the hydrodynamic description""
Principal investigators: Radulescu, Matei
""Femtosecond laser for laser-matter interactions, mechanical properties, reactive materials, photonic devices, cell and tissue imaging , biofluidics and biocompatibility""
Principal investigators: Weck, Arnaud
A high speed camera for visualizing reactive hydrodynamics, reactive material characterization, particle laden jet flows, fracture mechanics and bio-fluidics
Principal investigators: Radulescu, Matei
A flow visualization facility for hydrogen explosion safety research
Principal investigators: Radulescu, Matei
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
A short, specific email works best. This draft uses one of their recent papers; replace the parts in brackets with your own details before sending.