The effect of fuel composition on flame dynamics

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Bibliographic Details
Title: The effect of fuel composition on flame dynamics
Authors: Hendricks, Adam G. adhendri@umich.edu, Vandsburger, Uri1 uri@vt.edu
Source: Experimental Thermal & Fluid Science. Oct2007, Vol. 32 Issue 1, p126-132. 7p.
Subjects: Chemiluminescence, Absorption, Natural gas, Fuel
Abstract: Abstract: As fuel sources diversify, the gas turbine industry is under increasing pressure to develop fuel-flexible plants, able to use fuels with a variety of compositions from a large range of sources. However, the dynamic characteristics vary considerably with composition, in many cases altering the thermoacoustic stability of the combustor. We compare the flame dynamics, or the response in heat release rate of the flame to acoustic perturbations, of the three major constituents of natural gas: methane, ethane, and propane. The heat release rate is quantified using OH∗ chemiluminescence and product gas temperature. Gas temperature is measured by tracking the absorption of two high-temperature water lines, via Tunable Diode Laser Absorption Spectroscopy. The flame dynamics of the three fuels differ significantly. The changes in flame dynamics due to variations in fuel composition have the potential to have a large effect on the thermoacoustic stability of the combustor. [Copyright &y& Elsevier]
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Database: Engineering Source
Description
Abstract:Abstract: As fuel sources diversify, the gas turbine industry is under increasing pressure to develop fuel-flexible plants, able to use fuels with a variety of compositions from a large range of sources. However, the dynamic characteristics vary considerably with composition, in many cases altering the thermoacoustic stability of the combustor. We compare the flame dynamics, or the response in heat release rate of the flame to acoustic perturbations, of the three major constituents of natural gas: methane, ethane, and propane. The heat release rate is quantified using OH∗ chemiluminescence and product gas temperature. Gas temperature is measured by tracking the absorption of two high-temperature water lines, via Tunable Diode Laser Absorption Spectroscopy. The flame dynamics of the three fuels differ significantly. The changes in flame dynamics due to variations in fuel composition have the potential to have a large effect on the thermoacoustic stability of the combustor. [Copyright &y& Elsevier]
ISSN:08941777
DOI:10.1016/j.expthermflusci.2007.02.007