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An improved calculation model of weight coefficient for three-dimensional flame chemiluminescence tomography based on lens imaging theory

机译:基于透镜成像理论的三维火焰化学发光断层扫描重量系数的改进计算模型

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Flame tomography of chemiluminescence is a necessary combustion diagnostic technique that provides instantaneous 3D information on flame structure and excited species concentrations. However, in most research, the simplification of calculation model of weight coefficient based on lens imaging theory always causes information missing, which influences the result of further reconstructions. In this work, an improved calculation model is presented to determine the weight coefficient by the intersection areas of the blurry circle with the square pixels, which is more appropriate to the practical imaging process. The numerical simulation quantitatively evaluates the performance of the improved calculation method. Furthermore, a flame chemiluminescence tomography system consisting of 12 cameras was established to reconstruct 3D structure of instantaneous non-axisymmetric propane flame. Both numerical simulating estimations and experiments illustrate the feasibility of the improved calculation model in combustion diagnostic.
机译:化学发光的火焰断层扫描是一种必要的燃烧诊断技术,可提供关于火焰结构和激发物种浓度的瞬时3D信息。然而,在大多数研究中,基于镜头成像理论的权重系数计算模型的简化总是导致缺失的信息,这影响了进一步重建的结果。在这项工作中,一种改进的计算模型被呈现通过与正方形像素的模糊圈,这是更适合于实际成像过程的交叉区域,以确定的权重系数。数值模拟定量评估了改进的计算方法的性能。此外,建立由12个摄像机组成的火焰化学发光断层扫描系统,以重建瞬时非轴对称丙烷火焰的3D结构。数值模拟估计和实验均说明了改进的计算模型在燃烧诊断中的可行性。

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