A Survey for 3D Flame Chemiluminescence Tomography: Theory, Algorithms, and Applications (Invited)

Ying Jin, G. Situ
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引用次数: 0

Abstract

Combustion diagnostics play an essential role in energy engineering, transportation, and aerospace industries, which has great potential in combustion efficiency improvement and polluting emission control. The three-dimensional (3D) visualization of the combustion field and the measurement of key physical parameters such as temperature, species concentration, and velocity during the combustion process are important topics in the field of combustion diagnostics. Benefiting from the non-contact and non-intrusive advantages of the optical detection method as well as the advantages of the 3D full-field measurement of the measured field by computational tomography, flame chemiluminescence tomography (FCT) has the ability to realize non-intrusive and instantaneous 3D quantitative measurement and 3D full-field visualization of key physical parameters in the combustion process, which has crucial research significance in combustion diagnostics. In this study, we review the progress of FCT technique. First, we provide an extensive review of practical applications of FCT in state-of-the-art combustion diagnostics and research. Then, the basic concepts and mathematical theory of FCT are elaborated. Finally, we introduce the conventional reconstruction algorithm and proceed to more popular artificial intelligence-based algorithms.
三维火焰化学发光层析成像:理论、算法和应用(特邀)
燃烧诊断在能源工程、交通运输、航空航天等领域发挥着重要作用,在提高燃烧效率和控制污染排放方面具有巨大潜力。燃烧过程中燃烧场的三维可视化以及燃烧过程中温度、物质浓度和速度等关键物理参数的测量是燃烧诊断领域的重要课题。火焰化学发光层析成像(FCT)利用光学检测方法的非接触式、非侵入式的优点,以及计算层析成像对被测场进行三维全场测量的优点,能够实现燃烧过程中关键物理参数的非侵入式、瞬时三维定量测量和三维全场可视化,在燃烧诊断中具有至关重要的研究意义。本文就FCT技术的研究进展作一综述。首先,我们对FCT在最先进的燃烧诊断和研究中的实际应用进行了广泛的回顾。然后,阐述了FCT的基本概念和数学理论。最后,我们介绍了传统的重建算法,并进一步介绍了更流行的基于人工智能的算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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