Three-wavelength broadband soot pyrometry technique for axisymmetric flames

Juan José Cruz, Felipe Escudero, Emilio Álvarez, Luís Fernando Figueira da Silva, Gonzalo Carvajal, María Thomsen, Andrés Fuentes

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

10 Citas (Scopus)


Soot temperature measurements in laminar flames are often performed through two-color broadband emission pyrometry (BEMI) or modulated absorption/emission (BMAE) techniques, using models to relate the ratio between flame intensities at two different wavelengths with soot temperature. To benefit from wider spectral range and increase the accuracy of experimental estimation of soot temperature, this work proposes a new approach that uses three-color broadband images captured with a basic color camera. The methodology is first validated through simulations using numerically generated flames from the CoFlame code and then used to retrieve soot temperature in an experimental campaign. The experimental results show that using three-color and BEMI provides smoother reconstruction of soot temperature than two-color and BMAE when small disturbances exist in the measured signals due to a reduced experimental noise effect. A sensitivity analysis shows that the retrieved temperature from three-color BEMI is more resilient to variations on the ratio of measured signals than BMAE, which is confirmed by an error propagation analysis based on a Monte Carlo approach.

Idioma originalInglés
Páginas (desde-hasta)2654-2657
Número de páginas4
PublicaciónOptics Letters
EstadoPublicada - 1 jun. 2021
Publicado de forma externa


Profundice en los temas de investigación de 'Three-wavelength broadband soot pyrometry technique for axisymmetric flames'. En conjunto forman una huella única.

Citar esto