Application of silicon-based camera for measurement of non-homogeneous thermal field on realistic specimen surface - Archive ouverte HAL Access content directly
Journal Articles Applied Thermal Engineering Year : 2019

Application of silicon-based camera for measurement of non-homogeneous thermal field on realistic specimen surface

Abstract

The high-cost low-resolution infrared cameras operating in middle infrared spectral ranges are widely used to detect the thermal fields. In this study, a low-cost high-resolution silicon-based sensor camera operating in near infrared spectral ranges is used to perform the observation of the thermal fields on the realistic specimen surface. In near-infrared spectral ranges, a small temperature variation led to a large modification in the sensor illumination, inducing acquired images with over saturation or poor dynamic range of gray levels. To address this problem, an algorithm was proposed to precisely adjust the exposure time to acquire images with constant gray level whatever the temperature evolution is, and then used in heating experiment of a steel specimen. Results showed that images with constant gray level could be acquired during the experiment. A special radiometric model was used to perform near-infrared thermography. Based on this radiometric model, the thermal fields on steel specimen surface were successfully reconstructed without measuring surface emissivity.
Fichier principal
Vignette du fichier
a8bc28de-5211-4100-9ca3-1495310011b2-author.pdf (730.92 Ko) Télécharger le fichier
Origin : Files produced by the author(s)
Loading...

Dates and versions

hal-02131375 , version 1 (16-05-2019)

Licence

Attribution

Identifiers

Cite

Chao Zhang, Jérémy Marty, Anne Maynadier, Philippe Chaudet, Julien Réthoré, et al.. Application of silicon-based camera for measurement of non-homogeneous thermal field on realistic specimen surface. Applied Thermal Engineering, 2019, 149, pp.1186-1191. ⟨10.1016/j.applthermaleng.2018.12.114⟩. ⟨hal-02131375⟩
191 View
158 Download

Altmetric

Share

Gmail Facebook X LinkedIn More