A molecular tagging velocity (MTV) technique is developed to non-intrusively measure velocity in an integral effect test (IET) facility simulating a high-temperature helium-cooled nuclear reactor in accident scenarios. In these scenarios, the velocities are expected to be low, on the order of 1 m/s or less, which forces special requirements on the MTV tracer selection. Nitrous oxide (N2O) is identified as a suitable seed gas to generate NO tracers capable of probing the flow over a large range of pressure, temperature, and flow velocity. The performance of N2O-MTV is assessed in the laboratory at temperature and pressure ranging from 295 to 781 K and 1 to 3 atm. MTV signal improves with a temperature increase, but decreases with a pressure ...
International audienceObtaining local experimental data in internal rarefied gas flows is still a ch...
International audienceRarefied gas flows have a central role in microfluidic devices for many applic...
Two complementary unseeded molecular flow tagging techniques for gas-flow velocity field measurement...
N2O molecular tagging velocimetry (N2O-MTV) is developed for use in very-high-temperature reactor en...
The High Temperature Test Facility, HTTF, at Oregon State University (OSU) is an integral-effect tes...
Velocity profiles are measured using molecular tagging velocimetry (MTV) in the high temperature tes...
Molecular tagging velocimetry (MTV) is a non intrusive velocimetry technique based on laser spectros...
A variation on molecular tagging velocimetry (MTV) [1] designated iodine tagging velocimetry (ITV) i...
Planar laser-induced fluorescence (PLIF) of naturally occurring nitric oxide (NO) has been used to o...
Femtosecond laser electronic excitation tagging (FLEET) is an unseeded method for molecular tagging ...
International audienceThe goal of the present work is to implement Molecular Tagging Velocimetry (MT...
This paper reviews five laser-induced fluorescence-based velocimetry techniques that have been used ...
Measurements of mean and instantaneous streamwise velocity profiles in a hypersonic boundary layer w...
Selective Two-Photon Absorptive Resonance Femtosecond-Laser Electronic-Excitation Tagging (STARFLEET...
A novel velocimetry technique to probe the exhaust flow of a laboratory scale combustor is being dev...
International audienceObtaining local experimental data in internal rarefied gas flows is still a ch...
International audienceRarefied gas flows have a central role in microfluidic devices for many applic...
Two complementary unseeded molecular flow tagging techniques for gas-flow velocity field measurement...
N2O molecular tagging velocimetry (N2O-MTV) is developed for use in very-high-temperature reactor en...
The High Temperature Test Facility, HTTF, at Oregon State University (OSU) is an integral-effect tes...
Velocity profiles are measured using molecular tagging velocimetry (MTV) in the high temperature tes...
Molecular tagging velocimetry (MTV) is a non intrusive velocimetry technique based on laser spectros...
A variation on molecular tagging velocimetry (MTV) [1] designated iodine tagging velocimetry (ITV) i...
Planar laser-induced fluorescence (PLIF) of naturally occurring nitric oxide (NO) has been used to o...
Femtosecond laser electronic excitation tagging (FLEET) is an unseeded method for molecular tagging ...
International audienceThe goal of the present work is to implement Molecular Tagging Velocimetry (MT...
This paper reviews five laser-induced fluorescence-based velocimetry techniques that have been used ...
Measurements of mean and instantaneous streamwise velocity profiles in a hypersonic boundary layer w...
Selective Two-Photon Absorptive Resonance Femtosecond-Laser Electronic-Excitation Tagging (STARFLEET...
A novel velocimetry technique to probe the exhaust flow of a laboratory scale combustor is being dev...
International audienceObtaining local experimental data in internal rarefied gas flows is still a ch...
International audienceRarefied gas flows have a central role in microfluidic devices for many applic...
Two complementary unseeded molecular flow tagging techniques for gas-flow velocity field measurement...