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High speed laser tomography analysis of flame propagation in a simulated internal combustion engine - applications to nonuniform mixture

机译:模拟内燃机中的火焰传播高速激光断层扫描分析 - 非均匀混合物的应用

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Flame propagation has been studied in a simulated engine in presence of turbulence and nonhomogeneity of mixing. Experiment was conducted in a constant volume chamber where turbulence was generated by the motion of a piston. High speed laser tomography was used to study evolution of the flame growth in term of flame surface and flame length. Particle Image Velocimetry (PIV) associated to cross-correlation algorithm was used to provide evolution of a two dimensional velocity vectors map in the engine in presence of flame propagation. Laser tomography by means of quantitative Mie diffusion was applied to study the mean and the RMS-fluctuations of the nonhomogeneous mixture created in the chamber. Measurements have been performed with and without turbulence (the mixing being homogeneous or not) for statistical sets of digitized images. First results are presented here.
机译:在混合的湍流和非均匀性存在下,已经在模拟发动机中研究了火焰繁殖。实验在恒定体积室中进行,其中通过活塞的运动产生湍流。高速激光断层造影用于研究火焰表面和火焰长度的火焰生长的演变。与互相关算法相关联的粒子图像速度(PIV)用于在存在火焰传播的情况下提供发动机中的二维速度向量的演变。通过定量MIE扩散来研究激光断层扫描,以研究在腔室中产生的非均匀混合物的平均值和RMS波动。已经用湍流(混合是均匀的或不均匀的)进行测量,用于数字化图像的统计组。这里介绍了第一个结果。

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