Planar laser-induced incandescence (LII) imaging is reported at repetition rates up to 100 kHz using a burst-mode laser system to enable studies of soot formation dynamics in highly turbulent flames. To quantify the accuracy and uncertainty of relative soot volume fraction measurements, the temporal evolution of the LII field in laminar and turbulent flames is examined at various laser operating conditions. Under high-speed repetitive probing, it is found that LII signals are sensitive to changes in soot physical characteristics when operating at high laser fluences within the soot vaporization regime. For these laser conditions, strong planar LII signals are observed at measurement rates up to 100 kHz but are primarily useful for qualitati...
In-situ measurements of soot volume fraction in the exhausts of jet engines can be carried out using...
Combustion-generated carbon black nano particles, or soot, have both positive and negative effects d...
This study applies the techniques of laser induced incandescence (LII) and laser induced fluorescenc...
Several NASA-funded investigations focus on soot processes and radiative influences of soot in diffu...
Experimental LII (laser-induced incandescence) measurements were performed in a laminar gasjet flame...
Primary soot particle sizing by time-resolved laser-induced incandescence (TR-LII) imaging in a flat...
We present a photoacoustic technique for in situ sensing of particulates in reacting flows. The meth...
The influence of beam steering and signal trapping on the accuracy of soot volume fractions measured...
The laser-induced incandescence technique (LII) is a laser-based diagnostic technique for measuremen...
Knowledge of soot volume fraction is important to a wide range of combustion studies in microgravity...
This work has been aimed at developing and applying laser-induced incandescence (LII) for flame soot...
In this work, laser-based diagnostic techniques were developed and applied to investigate soot forma...
Multimode pulsed Nd:YAG lasers are commonly used in auto-compensating laser-induced incandescence (A...
In this paper we describe our development of the LII technique for point measurement in flames and t...
The ability to accurately measure solid particulate levels in various applications ranging from engi...
In-situ measurements of soot volume fraction in the exhausts of jet engines can be carried out using...
Combustion-generated carbon black nano particles, or soot, have both positive and negative effects d...
This study applies the techniques of laser induced incandescence (LII) and laser induced fluorescenc...
Several NASA-funded investigations focus on soot processes and radiative influences of soot in diffu...
Experimental LII (laser-induced incandescence) measurements were performed in a laminar gasjet flame...
Primary soot particle sizing by time-resolved laser-induced incandescence (TR-LII) imaging in a flat...
We present a photoacoustic technique for in situ sensing of particulates in reacting flows. The meth...
The influence of beam steering and signal trapping on the accuracy of soot volume fractions measured...
The laser-induced incandescence technique (LII) is a laser-based diagnostic technique for measuremen...
Knowledge of soot volume fraction is important to a wide range of combustion studies in microgravity...
This work has been aimed at developing and applying laser-induced incandescence (LII) for flame soot...
In this work, laser-based diagnostic techniques were developed and applied to investigate soot forma...
Multimode pulsed Nd:YAG lasers are commonly used in auto-compensating laser-induced incandescence (A...
In this paper we describe our development of the LII technique for point measurement in flames and t...
The ability to accurately measure solid particulate levels in various applications ranging from engi...
In-situ measurements of soot volume fraction in the exhausts of jet engines can be carried out using...
Combustion-generated carbon black nano particles, or soot, have both positive and negative effects d...
This study applies the techniques of laser induced incandescence (LII) and laser induced fluorescenc...