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Experimental investigation on butane diffusion flames under the influence of magnetic field by using digital speckle pattern interferometry

机译:数字散斑图干涉法在磁场作用下丁烷扩散火焰的实验研究

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摘要

In this paper, the effect of magnetic fields on the temperature and temperature profile of a diffusion flame obtained from a butane torch burner are investigated experimentally by using digital speckle pattern interferometry (DSPI). Experiments were conducted on a diffusion flame generated by a butane torch burner in the absence of a magnetic field and in the presence of uniform and nonuniform magnetic fields. A single DSPI fringe pattern was used to extract phase by using a Riesz transform and monogenic signal. Temperature inside the flame was determined experimentally both in the absence and in the presence of magnetic fields. Experimental results reveal that the maximum temperature of the flame is increased under the influence of an upward-decreasing magnetic gradient and decreased under an upward-increasing magnetic gradient while a negligible effect on temperature in a uniform magnetic field was observed. (c) 2015 Optical Society of America
机译:本文通过数字散斑图干涉法(DSPI),通过实验研究了磁场对从丁烷炬管燃烧器获得的扩散火焰的温度和温度分布的影响。在不存在磁场且存在均匀和不均匀磁场的情况下,对丁烷炬管燃烧器产生的扩散火焰进行了实验。通过使用Riesz变换和单基因信号,使用单个DSPI条纹图案提取相位。在不存在磁场和存在磁场的情况下,通过实验确定火焰内部的温度。实验结果表明,火焰的最高温度在向上减小的磁梯度的影响下升高,而在向上增大的磁梯度的影响下降低,而在均匀磁场中对温度的影响可忽略不计。 (c)2015年美国眼镜学会

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