Volume 4: Controls, Diagnostics, and Instrumentation; Cycle Innovations; Cycle Innovations: Energy Storage; Education; Electric 2021
DOI: 10.1115/gt2021-59103
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Characterisation and Validation of an Optical Pressure Sensor for Combustion Monitoring at Low Frequency

Abstract: This paper introduces a novel approach to monitor pressure dynamics in turbomachinery. This innovation is motivated by the need expressed by machine OEMs and end-users to detect and avoid combustion instabilities, as well as lean-blowout (LBO), in low emission combustion systems. Such situations are often characterised by a marked increase of pressure signals in low frequency range. The piezoelectric technology, conventionally used for pressure measurements, presents sensitivity and stability issues at high te… Show more

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“…To assess the performance of the flame health indicators described above, we used the data collected during the tests presented in Nicchiotti, et al (2021). The main objective of this study was to compare the optical sensing system with its piezo-electric counterpart in a controlled, precise and repeatable environment, while running several realistic scenarios representative of gas turbine combustion.…”
Section: Lbo Monitoring: Test Setupmentioning
confidence: 99%
“…To assess the performance of the flame health indicators described above, we used the data collected during the tests presented in Nicchiotti, et al (2021). The main objective of this study was to compare the optical sensing system with its piezo-electric counterpart in a controlled, precise and repeatable environment, while running several realistic scenarios representative of gas turbine combustion.…”
Section: Lbo Monitoring: Test Setupmentioning
confidence: 99%