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Integrated gas analyzer for complete monitoring of turbine engine test cells.

作者信息

Markham James R, Bush Patrick M, Bonzani Peter J, Scire James J, Zaccardi Vincent A, Jalbert Paul A, Bryant M Denise, Gardner Donald G

机构信息

Advanced Fuel Research, Inc., 87 Church Street, East Hartford, Connecticut 06108, USA.

出版信息

Appl Spectrosc. 2004 Jan;58(1):130-6. doi: 10.1366/000370204322729568.

Abstract

Fourier transform infrared (FT-IR) spectroscopy is proving to be reliable and economical for the quantification of many gas-phase species during testing and development of gas turbine engines in ground-based facilities such as sea-level test cells and altitude test cells. FT-IR measurement applications include engine-generated exhaust gases, facility air provided as input to engines, and ambient air in and around test cells. Potentially, the traditionally used assembly of many gas-specific single gas analyzers will be eliminated. However, the quest for a single instrument capable of complete gas-phase monitoring at turbine engine test cells has previously suffered since the FT-IR method cannot measure infrared-inactive oxygen molecules, a key operational gas to both air-breathing propulsion systems and test cell personnel. To further the quest, the FT-IR sensor used for the measurements presented in this article was modified by integration of a miniature, solid-state electrochemical oxygen sensor. Embedded in the FT-IR unit at a location near the long-effective-optical-path-length gas sampling cell, the amperometric oxygen sensor provides simultaneous, complementary information to the wealth of spectroscopic data provided by the FT-IR method.

摘要

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