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Full bore imaging of combustion and quantitative AFR PLIF with a multi-component fuel and co-evaporating tracers

Abstract:

A technique has been developed for full bore imaging, and a high speed video camera used to obtain images that have been processed for soot temperature and loading, and flame growth. The soot measurements have been made with a colour ratio technique that avoids the need for an in-situ absolute radiation calibration. Instead, the spectral response of the camera has to be determined for each of the red, green and blue channels. Planar Laser-Induced Fluorescence (PLIF) has been extensively used ...

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Institution:
University of Oxford
Department:
Oxford, MPLS, Physics, Atomic and Laser Physics
Role:
Author
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Journal:
Institution of Mechanical Engineers: Combustion Engines and Fuels Group - Internal Combustion Engines: Performance, Fuel Economy and Emissions
Pages:
15-25
Publication date:
2008-01-01
URN:
uuid:61e9bbf1-d212-40c3-be8c-e19fed7b14f1
Source identifiers:
249403
Local pid:
pubs:249403
Language:
English

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