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Surface Density Measuremdents of Turbulent Premixed Flames in a Spark-ignition Engine and a Bunsen-Tuype Burner Using Planar Laser-Induced Fluorescence.

机译:使用平面激光诱导的荧光的火花点火发动机和Bunsen-tuyper燃烧器中湍流预混火焰的表面密度测量值。

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Surface densities of turbulent three-dimensional premixed flames determined from planar flame images and flame surface densities in a spark-ignition engine are both reported for the first time. The flame images were obtained using laser-induced fluorescence of biacetyl in the engine and of OH radicals in a Bunsen flame. Images from orthogonal planes have been used to determine the mean orientation angle along the line of intersection of the planes in the engine experiments. Because of the axisymmetric flow field of the Bunsen flame, it has been assumed that the flame fron thas a symmetric mean orientation behavior about the axis, and the normal to the flame front has a symmetric mean orientation behavior about the axis, and the normal to the flame front can be determined from images in one plane. The flame surface density (SIGMA) profiles and orientation angle that produced them are presented as a function of the progress variable. The directional cosines for the engine flame are almost identical in both orthogonal planes, indicating the isotropic nature of the flame front. A typical value of 0.7 has been found for the directional cosine for the Bunsen flame and the engine flame at 1200 rpm. At a lower engine speed, the directional consine has increased slightly. The Bray-Moss-Libby (BML) model coefficients obtained at maximum flame surface density in this work agree with the previously reported results and display an inverse power-law dependence on the integral length scale when normalized by the laminar flame thickness. The BML coefficients obtained from direct numerical simulation (DNS) studies are in qualitative agreement with the present results. In the range of u'/S_L investigated in this work, the flame-surface density has not shown much variation.
机译:从平面火焰图像和火花点火发动机中确定的湍流三维预混火焰的表面密度首次报告了火花点火发动机中的火焰表面密度。在发动机中的Biacetyl的激光诱导的荧光和Bunsen火焰中的OH基团获得火焰图像。来自正交平面的图像已被用于确定发动机实验中平面的交叉线的平均方向角。因为本生焰的轴对称流场中,已经假设火焰氟利昂全髋关节置换绕所述轴线的对称的平均取向行为,并且垂直于火焰前沿具有关于轴线对称的平均取向行为,并且垂直于火焰前沿可以从一个平面中的图像确定。产生它们的火焰表面密度(Sigma)轮廓和取向角作为进度变量的函数呈现。发动机火焰的定向余弦在两个正交平面中几乎相同,表明火焰前部的各向同性本质。已经找到了0.7的典型值为Bunsen火焰的定向余弦和1200rpm处的发动机火焰。以较低的发动机速度,方向性略有增加。在该工作中最大火焰表面密度获得的Bray-Moss-libby(BML)模型系数与先前报道的结果一致,并且当通过层状火焰厚度归一化时,显示器对整体长度尺度的逆动力律依赖性。从直接数值模拟(DNS)研究中获得的BML系数与本结果进行定性协议。在该工作中调查的U'/ S_L的范围内,火焰表面密度没有显示太大变化。

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