TEMPERATURE MEASUREMENT IN A LPG LAMINAR JET FLAME USING A TWO-THERMOCOUPLES TECHNIQUE FOR RADIATION CORRECTION

Author(s):  
Rafael Salvagni ◽  
Rafael Polacinski Wolanin ◽  
Felipe Roman Centeno
AIAA Journal ◽  
1965 ◽  
Vol 3 (5) ◽  
pp. 957-960 ◽  
Author(s):  
WARREN C. STRAHLE
Keyword(s):  

Author(s):  
Felipe R. Centeno ◽  
Rogério Brittes ◽  
Luís G.P. Rodrigues ◽  
Felipe R. Coelho ◽  
Francis H.R. França

Author(s):  
Chan Soo Kim ◽  
Sung-Deok Hong ◽  
Dong-Un Seo ◽  
Yong-Wan Kim

When a thermocouple is placed in a high temperature gas-flow stream, the measured temperature could be biased from the true gas temperature due to a large radiation heat transfer from a thermocouple surface to its surroundings. In this study, two thermocouples of unequal diameters of 1/8 inch and 1/16 inch were used to correct the radiation effect. This method is called the reduced radiation error (RRE). The test results show that the radiation on the thermocouple sheath tubes is the source of the error in the gas temperature measurement, and the RRE method is very effective for radiation correction under negligible conditions with the conductive dissipation through the sheath tubes.


2003 ◽  
Vol 6 (3) ◽  
pp. 211-211 ◽  
Author(s):  
S. H. Won ◽  
J. S. Lee ◽  
S. H. Jin ◽  
S. H. Chung

2021 ◽  
Vol 2127 (1) ◽  
pp. 012017
Author(s):  
V A Arbuzov ◽  
E V Arbuzov ◽  
Yu N Dubnishchev ◽  
O S Zolotukhina ◽  
V V Lukashov

Abstract Work motivation – adaptation of optical Hilbert diagnostic methods for visualization and study of optical density and phase temperature fields in the structure of an axisymmetric diffusion hydrogen-air flame. The diagnostic complex is implemented on the basis of the IAB-451 device with modified blocks of optical filtering, information source and processing. A laminar jet flame H2/N2 in still air is considered. The investigated torch is oriented vertically. Visualization of phase disturbances induced by the medium under study in a multi-wavelength probing (λ1 = 636 nm, λ2 = 537 nm and λ3 = 466 nm) light field is performed using polychromatic Hilbert and Foucault-Hilbert transformations in combination with registration and pixel-by-pixel processing of the dynamic RGB image structure. The dynamic phase structure of the diffusion flame is visualized. The initial temperature approximation, based on the assumption of an air mixture, is corrected so that the calculated hilbertogram matches the measured one as closely as possible. The data obtained are in good agreement with the results of thermocouple measurements. The temperature was recorded by thermocouples at reference points. The phase function is reconstructed in axisymmetric sections from RGB-hilbertograms. The reliability of the results is confirmed by comparing the experimentally obtained hilbertograms and hilbertograms reconstructed from phase structures using the Abel transform.


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