Measurement of Flame Temperature and Adiabatic Burning Velocity of Methane/Air Mixtures

A. van Maaren, D. S. THUNG, L.P.H. de Goey

Combustion Science and Technology · 1994 · 254 citations · 10 references

DOIFull text

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Concepts

TL;DR

The study introduces a simple, accurate method to determine flame temperature and adiabatic burning velocity of laminar premixed flat methane/air flames using a specially constructed flat flame burner. Heat loss is quantified from the burner plate temperature profile, with adiabatic velocity obtained when the profile is uniform (zero net heat loss), and several techniques are employed to measure the plate’s thermal conductivity. The method yields flame temperatures and adiabatic velocities that agree closely with literature data and one‑dimensional calculations, and serves as a reliable reference for other diagnostics across the entire flammability range.

Abstract

Abstract A simple and accurate method is presented to determine the flame temperature and the adiabatic burning velocity of laminar premixed flat flames, using a specially constructed flat flame burner. The heat loss of the flat flame is determined from measurement of the temperature profile of the burner plate. The adiabatic burning velocity is found when the burner plate temperature profile is uniform, implying that the net heat loss of the flame is zero. Several methods are presented to determine the thermal conductivity of the burner plate. The results for methane/air mixtures are compared with experimental data found in the literature and one-dimensional flame calculations, and close agreement is found. The method is particularly useful in providing an accurate reference for other temperature measurement techniques (e.g. spectroscopic laser diagnostics), and to determine adiabatic burning velocities over the entire range of flamm ability

References

10