• Title of article

    Dual-pump CARS temperature and major species concentration measurements in counter-flow methane flames using narrowband pump and broadband Stokes lasers

  • Author/Authors

    Mathew P. Thariyan، نويسنده , , Mathew P. and Ananthanarayanan، نويسنده , , Vijaykumar and Bhuiyan، نويسنده , , Aizaz H. and Naik، نويسنده , , Sameer V. and Gore، نويسنده , , Jay P. and Lucht، نويسنده , , Robert P.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    10
  • From page
    1390
  • To page
    1399
  • Abstract
    Dual-pump coherent anti-Stokes Raman scattering (CARS) is used to measure temperature and species profiles in representative non-premixed and partially-premixed CH4/O2/N2 flames. A new laser system has been developed to generate a tunable single-frequency beam for the second pump beam in the dual-pump N2–CO2 CARS process. The second harmonic output (∼532 nm) from an injection-seeded Nd:YAG laser is used as one of the narrowband pump beams. The second single-longitudinal-mode pump beam centered near 561 nm is generated using an injection-seeded optical parametric oscillator, consisting of two non-linear β-BBO crystals, pumped using the third harmonic output (∼355 nm) of the same Nd:YAG laser. A broadband dye laser (BBDL), pumped using the second harmonic output of an unseeded Nd:YAG laser, is employed to produce the Stokes beam centered near 607 nm with full-width-at-half-maximum of ∼250 cm−1. The three beams are focused between two opposing nozzles of a counter-flow burner facility to measure temperature and major species concentrations in a variety of CH4/O2/N2 non-premixed and partially-premixed flames stabilized at a global strain rate of 20 s−1 at atmospheric-pressure. For the non-premixed flames, excellent agreement is observed between the measured profiles of temperature and CO2/N2 concentration ratios with those calculated using an opposed-flow flame code with detailed chemistry and molecular transport submodels. For partially-premixed flames, with the rich side premixing level beyond the stable premixed flame limit, the calculations overestimate the distance between the premixed and the non-premixed flamefronts. Consequently, the calculated temperatures near the rich, premixed flame are higher than those measured. Accurate prediction of the distance between the premixed and the non-premixed flames provides an interesting challenge for future computations.
  • Keywords
    laser diagnostics , Optical Parametric Oscillator , Non-premixed flames , Dual-pump CARS , Partially-premixed flames , Laminar counter-flow flames
  • Journal title
    Combustion and Flame
  • Serial Year
    2010
  • Journal title
    Combustion and Flame
  • Record number

    2275230