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首页> 外文期刊>日本機械学会論文集. B編 >Gas-Flow Measurements in a Jet Flame Using Cross-Correlation of High-Speed Particle-Images
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Gas-Flow Measurements in a Jet Flame Using Cross-Correlation of High-Speed Particle-Images

机译:使用高速粒子图像的互相关来测量喷射火焰中的气流

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Time changes of a two-dimensional distribution of velocities in a nitrogen jet and a methane jet flame are measured by cross-correlation particle-image-velocimetry (PIV). From the measured results in a jet and a jetting flame, it is shown that the velocity gradient at shear layer in the reacting zone is increased due to the local acceleration by buoyancy, resulting in higher turbulence intensities compared with those in a non-reacting jet. Also, from the change of the distribution of velocity vectors with time, it is observed that the turbulence eddies are carried downstream along the gas motion with a little transformation. The time scale of turbulence at every location in the flow is obtained from the autocorrelation function of the velocity fluctuations. Furthermore, this can afford to estimate the turbulence length-scale. It is shown that the characteristic length-scales of a flaming jet are about 1.5 times greater than those of a non-flaming jet.
机译:通过互相关粒子图像测速仪(PIV)测量氮气和甲烷火焰中二维速度分布的时间变化。从射流和射流火焰的测量结果可以看出,反应区剪切层的速度梯度由于浮力引起的局部加速度而增加,与非反应射流相比,湍流强度更高。 。而且,从速度矢量的分布随时间的变化,可以看到湍流涡流沿气体运动向下游移动,并具有很小的变化。从速度波动的自相关函数可以得出流中每个位置的湍流时间尺度。此外,这可以估计湍流长度尺度。结果表明,火焰喷射流的特征长度尺度比非火焰喷射流的特征长度尺度大约1.5倍。

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