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Concurrent measurement of combustion oscillation and temperature of multiple flames in a simulated gas turbine

  • Gang Lu*
  • , Spiros Siouris
  • , Yong Yan
  • , Chris W. Wilson
  • , Steve Cornwell
  • *Corresponding author for this work
  • University of Greenwich
  • RWE Power AG
  • University of Sheffield

Research output: Contribution to journalConference articlepeer-review

Abstract

A vision-based instrumentation system for the measurement of oscillation frequency and temperature distribution of multiple flames in a gas turbine combustor is developed and tested. The system, utilising imaging, spectral analysis and two-colour pyrometry techniques, is capable of monitoring the oscillation frequency and temperature distribution of up to eight flames concurrently and simultaneously. The relative error of the system for frequency measurement is less than 1% (0-100Hz) whilst for temperature measurement it is no greater than 2% (1000°C-1500°C). Experimental results obtained on a simulated gas turbine have demonstrated that the fundamental frequency of the flame measured by system responds in predictable ways to the excitation frequency of fuel flow. Further development is underway to apply the technique to a practical gas turbine combustor.

Original languageEnglish
Pages (from-to)1112-1115
Number of pages4
JournalConference Record - IEEE Instrumentation and Measurement Technology Conference
Volume2
StatePublished - 2004
Externally publishedYes
EventProceedings of the 21st IEEE Instrumentation and Measurement Technology Conference, IMTC/04 - Como, Italy
Duration: 18 May 200420 May 2004

Keywords

  • Flame
  • Gas turbine
  • Oscillation
  • Spectral analysis
  • Temperature
  • Two-colour pyrometry

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