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Determining the effect of species composition on temperature fields of tank flames using real-time holographic interferometry

机译:使用实时全息干涉法确定物种组成对罐式火焰温度场的影响

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Interference fringe fields and the visible flame field of a 50mm diameter n-hexane tank flame were simultaneously measured using a real-time holographic interferometer with special image optics. An inhouse developed image processing method was applied to the holographic images to calculate the interference fringe order profiles. The effect of species composition on temperature profiles was studied by considering three different cases: using the measured species profiles, using an overall reaction mechanism based on stoichiometric combustion, and by assuming that the flame consists of hot air. The results show that species composition has the largest effect on temperature fields in regions near the flame axis at lower axial distances. In the region of the plume zone, the flame consists primarily of hot air due to the increase in total entrained air.
机译:使用带有特殊图像光学元件的实时全息干涉仪,同时测量了直径为50mm的正己烷罐火焰的干涉条纹场和可见火焰场。将内部开发的图像处理方法应用于全息图像,以计算干涉条纹阶数。通过考虑三种不同的情况研究了物种组成对温度分布的影响:使用测得的物种分布,使用基于化学计量燃烧的整体反应机制以及假设火焰由热空气组成。结果表明,在较低的轴向距离处,物种组成对火焰轴附近区域的温度场影响最大。在烟羽区域,由于总夹带空气的增加,火焰主要由热空气组成。

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