SiC-Based thin-filament pyrometry: Theory and thermal properties
Identifieur interne : 001B69 ( Main/Exploration ); précédent : 001B68; suivant : 001B70SiC-Based thin-filament pyrometry: Theory and thermal properties
Auteurs : V. Vilimpoc [États-Unis] ; L. P. Goss [États-Unis]Source :
- Symposium (International) on Combustion [ 0082-0784 ] ; 1989.
English descriptors
- Teeft :
- Axial, Central states section, Combustion institute, Convective heat transfer, Detector, Diffusion flame, Experimental arrangement, Experimental system, Filament, Filament emission, Filament image, Filament temperature, Flame surface, Flow conditions, Fluid properties, Heat transfer, High temperature, Ingaas detector, Limited response, Maximum temperature, Measurement precision, Nusselt number, Planck equation, Present study, Reaction zone, Relative importance, Response time, Reynolds number, Schematic diagram, Spatial resolution, Surface area, Temperature difference, Temperature distribution, Temperature profiles, Temporal response, Thermal conductivity, Thermal diffusion, Thermal properties, Transmission characteristics.
Abstract
Blackbody radiation from a thin filament of β-SiC can be used to measure the spatial temperature distribution in a combusting flowfield. The technique, Thin-Filament Pyrometry, exhibits rapid temporal response and excellent spatial resolution because of the small diameter and low thermal conductivity of the filament. Factors which affect the accuracy, temporal response, and spatial resolution of the probe in a H2-N2 jet diffusion flame are presented.
Url:
DOI: 10.1016/S0082-0784(89)80205-X
Affiliations:
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<term>Limited response</term>
<term>Maximum temperature</term>
<term>Measurement precision</term>
<term>Nusselt number</term>
<term>Planck equation</term>
<term>Present study</term>
<term>Reaction zone</term>
<term>Relative importance</term>
<term>Response time</term>
<term>Reynolds number</term>
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<term>Surface area</term>
<term>Temperature difference</term>
<term>Temperature distribution</term>
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<front><div type="abstract" xml:lang="en">Blackbody radiation from a thin filament of β-SiC can be used to measure the spatial temperature distribution in a combusting flowfield. The technique, Thin-Filament Pyrometry, exhibits rapid temporal response and excellent spatial resolution because of the small diameter and low thermal conductivity of the filament. Factors which affect the accuracy, temporal response, and spatial resolution of the probe in a H2-N2 jet diffusion flame are presented.</div>
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