Infrared and Laser Engineering, Volume. 51, Issue 10, 20220352(2022)
Three-dimensional radiation thermometry for dynamic combustion field based on multi-CCD synchronous coupling (invited)
[1] Junling Song, Yajing Jiang, Wei Rao, et al. Design of a high-resolution optical measuring ring for supersonic combustion flow field. Infrared and Laser Engineering, 50, 20210063(2021).
[2] Danmeng Zhang, Lu Bai, Qiang Lv, et al. Image simulation and feature extraction of UV high resolution radiation of plume. Infrared and Laser Engineering, 50, 20200466(2021).
[3] Y Li, C J Dai. Precise temperature measurement with imaged spectral technique. Spectroscopy and Spectral Analysis, 36, 38-41(2016).
[4] Wei Wang, Hongjin Du, Jinbiao Fan, et al. Measurement and calculation technology of temperature compensation of explosion flame based on infrared radiation. Explosion and Shock Waves, 41, 93-104(2021).
[5] Chun Lou, Ludong Zhang, Yang Pu, et al. Research advances in passive techniques for combustion diagnostics based on analysis of spontaneous emission radiation. Journal of Experiments in Fluid Mechanics, 35, 1-17(2021).
[6] X D Liu, X J Hao, B Xue, et al. Two-dimensional flame temperature and emissivity distribution measurement based on element doping and energy spectrum analysis. IEEE Access, 8, 200863-200874(2021).
[7] W W Cai, C F Kaminski. Tomographic absorption spectroscopy for the study of gas dynamics and reactive flows. Progress in Energy and Combustion Science, 8, 200863-200874(2021).
[8] M M Hossain, G Lu, D Sun, et al. Three-dimensional reconstruction of flame temperature and emissivity distribution using optical tomographic and two-colour pyrometric techniques. Measurement Science and Technology, 24, 074010(2013).
[9] C L Xu, W C Zhao, J H Hu, et al. Liquid lens-based optical sectioning tomography for three-dimensional flame temperature measurement. Fuel, 196, 550-563(2017).
[10] Wenchao Zhao, Biao Zhang, Chuanlong Xu, et al. Measurementof 3D flame temperature field based on light field optical sectioning tomography. Journal of Southeast University (Natural Science Edition), 47, 938-944(2017).
[11] H Y Wang, Y F Shi, X J Zhu, et al. 3-D reconstruction of bubble flow field based on the method of multivision by rough-precise location algebraic reconstruction technique. IEEE Transactions on Instrumentation and Measurement, 71, 1002811(2022).
[12] Dongxiao Lu, Wenhui Fang, Yuyao Li, et al. Optical coherence tomography: Principles and recent developments. Chinese Optics, 13, 919-935(2020).
[13] L Shan, H Y Huang, B Hong, et al. Temperature measurement method of flame image fusion with different exposures. Energies, 13, 1487(2016).
[14] C Kirmse, H Chaves. Measurement of the average two-dimensional surface temperature distribution of drops in a melt atomization process. Journal of Thermal Spray Technology, 24, 690-695(2015).
[15] C Rodiet, B Remu, A Degiovanni, et al. Optimal wavelengths obtained from laws analogous to the Wien's law for monospectral and bispectral methods, and general methodology for multispectral temperature measurements taking into account global transfer function including non-uniform emissivity of surfaces. Infrared Physics and Technology, 76, 444-454(2016).
[16] X X Guo, K W Pan, L F Hou, et al. Research on radiation spectroscopy thermometry of plume of solid rocket motor. Spectroscopy and Spectral Analysis, 41, 305-311(2021).
Get Citation
Copy Citation Text
Pengcheng Duan, Bo Cheng, Jinge Guan, Kun Chen, Chengfei Zhang, Yaoyu Cheng, Chenyang Xue, Yongqiu Zheng. Three-dimensional radiation thermometry for dynamic combustion field based on multi-CCD synchronous coupling (invited)[J]. Infrared and Laser Engineering, 2022, 51(10): 20220352
Category: Special issue-High-temperature sensing technology based on micro/nano optical structure
Received: May. 24, 2022
Accepted: --
Published Online: Jan. 6, 2023
The Author Email: Zheng Yongqiu (zhengyongqiu@nuc.edu.cn)