J Zhou, J Du, M Zhou, Y Wang - Journal of Aerosol Science, 2024 - Elsevier
Counterflow diffusion flame is an attractive platform for fundamental research on kinetics of soot formation. Accurate determination of soot volume fraction in the flame is a prerequisite …
An acoustically forced axisymmetric laminar non-premixed flame is experimentally studied to evaluate soot volume fraction, temperature and radiation throughout the phases of its …
W Du, D Wen, L Ma, Y Wang - Applied Optics, 2022 - opg.optica.org
A hybrid constraint spectral thermometry (HCST) method based on combined light extinction and spectral soot emission was developed for temperature measurements in sooting flames …
Studying the interplay between heat transfer mechanisms in a burning wildland fuel layer enables to better understand wildfire behavior. This works aims to assess the effect of air …
This paper presents a low-cost approach based on Artificial Neural Networks (ANNs) for retrieving fields of soot temperature in laminar flames from broadband soot emission signals …
Q Yu, C Liu, S Gu, Y Dong - Optics Express, 2024 - opg.optica.org
The constant spectral emissivity decoupling method within current wide-spectrum thermometry theories stands as a primary factor contributing to accuracy degradation. This …
J Xing, J Guo, S Cui, W Li, X Chang - Optics Letters, 2023 - opg.optica.org
Neural networks are the most promising tool to solve the problem that an assumed emissivity model is needed in the field of multispectral radiometric temperature …
Fire spread inside a spacecraft is a constant concern in space travel. Understanding how the fire grows and spreads, and how it can potentially be extinguished is critical for planning …
J Zhou, M Zhou, L Ma, Y Wang - Optics Express, 2022 - opg.optica.org
Counterflow diffusion flame is a favorable platform for fundamental investigation of soot kinetics. A diffuse back-illumination imaging technique for measuring soot volume fractions …