Investigation of BAM: Eu2+ particles as a tracer for temperature imaging in flames

Z Yin, B Fond, G Eckel, C Abram, W Meier, I Boxx… - Combustion and …, 2017 - Elsevier
Z Yin, B Fond, G Eckel, C Abram, W Meier, I Boxx, F Beyrau
Combustion and Flame, 2017Elsevier
The capabilities of the joint temperature-velocity imaging technique, thermographic particle
image velocimetry (TPIV), are examined in H 2 laminar diffusion flames by seeding the fuel
stream with BAM: Eu 2+ particles. The upper measurable temperature is found to be 900–
1000 K. For these phosphor particles this limit is primarily imposed by thermal quenching of
the laser-induced luminescence emission that is used for thermometry. Within this limit, the
measured temperature distribution quantitatively agrees with a numerical simulation. It is …
The capabilities of the joint temperature-velocity imaging technique, thermographic particle image velocimetry (TPIV), are examined in H 2 laminar diffusion flames by seeding the fuel stream with BAM: Eu 2+ particles. The upper measurable temperature is found to be 900–1000 K. For these phosphor particles this limit is primarily imposed by thermal quenching of the laser-induced luminescence emission that is used for thermometry. Within this limit, the measured temperature distribution quantitatively agrees with a numerical simulation. It is also shown that the luminescence signal per phosphor particle is not influenced by passing the particles through a high temperature reaction zone.
Elsevier
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