A CO2 nanosecond repetitively pulsed discharge (NRP) is a harsh environment for laser induced fluorescence (LIF) diagnostics. The difficulties arise from it being a strongly collisional system in which the gas composition, pressure and temperature, have quick and strong variations. The relevant diagnostic problems are described and illustrated through the application of LIF to the measurement of the OH radical in three different discharge configurations, with gas mixtures containing CO2 + H2O. These range from a dielectric barrier NRP with He buffer gas, a less hostile case in which absolute OH density measurement is possible, to an NRP in CO2+H2O, where the full set of drawbacks is at work. In the last case, t...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
A CO2 nanosecond repetitively pulsed discharge (NRP) is a harsh environment for laser induced flu...
\u3cp\u3eA CO\u3csub\u3e2\u3c/sub\u3e nanosecond repetitively pulsed discharge (NRP) is a harsh envi...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
\u3cp\u3eThis paper offers an outline of laser induced fluorescence (LIF) diagnostics and practical ...
Author Institution: Michael A. Chaszeyka Nonequilibrium Thermodynamics Laboratory, Department of Mec...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
In the context of the electrification of the chemical industry, this thesis sets itself the goal of ...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
The work presented in the thesis covers the use of laser-induced fluorescence (LIF) and photofragmen...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
A CO2 nanosecond repetitively pulsed discharge (NRP) is a harsh environment for laser induced flu...
\u3cp\u3eA CO\u3csub\u3e2\u3c/sub\u3e nanosecond repetitively pulsed discharge (NRP) is a harsh envi...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
\u3cp\u3eThis paper offers an outline of laser induced fluorescence (LIF) diagnostics and practical ...
Author Institution: Michael A. Chaszeyka Nonequilibrium Thermodynamics Laboratory, Department of Mec...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
In the context of the electrification of the chemical industry, this thesis sets itself the goal of ...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
Time-resolved absolute OH density measurements in a millisecond-pulsed DC glow discharge from carbon...
The work presented in the thesis covers the use of laser-induced fluorescence (LIF) and photofragmen...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...
Time and spatially resolved OH densities are determined in a nanosecond pulsed filamentary discharge...