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3-D flame temperature reconstruction in optical sectioning tomography

机译:光学断层扫描中的3-D火焰温度重建

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The three dimensional (3-D) flame temperature measurement is of great significance to the study of flame structure, fuel mixing and combustion mechanism, and the stability of combustion control. This paper presents the design, implementation and evaluation of a 3-D imaging system based on optical sectioning tomography to reconstruct the temperature distribution of candlelight. A 3-D luminous object can be regarded as a combination of a series of two dimensional luminous sections. Hence, based on superposition theorem, the original luminosity distribution of each section can be retrieved from focused and defocused images taken by focusing on each of sections with a single CCD camera. From the relationship between the gray level of image and the temperature, the 3-D distribution of flame temperature can be reconstructed. The experimental results on candlelight prove the feasibility of the method which can be used as a new measurement and diagnostic tool for quantitative characterization of combustion flame.
机译:三维(3-D)火焰温度测量对研究火焰结构,燃料混合和燃烧机理以及燃烧控制的稳定性具有重要意义。本文介绍了一种基于光学切片层析成像技术重构烛光温度分布的3D成像系统的设计,实现和评估。 3-D发光物体可以看作是一系列二维发光部分的组合。因此,基于叠加定理,可以通过使用单个CCD相机聚焦在每个部分上而从聚焦和散焦图像中检索每个部分的原始亮度分布。根据图像灰度与温度之间的关系,可以重建火焰温度的3D分布。在烛光下的实验结果证明了该方法的可行性,该方法可作为一种用于燃烧火焰定量表征的新型测量和诊断工具。

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