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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Measurement of the conditioned turbulence and temperature field of a premixed Bunsen burner by planar laser Rayleigh scattering and stereo particle image velocimetry
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Measurement of the conditioned turbulence and temperature field of a premixed Bunsen burner by planar laser Rayleigh scattering and stereo particle image velocimetry

机译:用平面激光瑞利散射和立体粒子图像测速仪测量预混本生灯的条件湍流和温度场

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The turbulence and temperature field of Bunsen-type turbulent lean methane/air flames has been investigated using planar laser Rayleigh scattering (PLRS) and stereo particle image velocimetry (stereo PIV). Temporally averaged reaction progress variable plots have been computed from PLRS measurements in order to provide a basis with regards to the verification of computational fluid dynamics (CFD) models. Turbulence was characterised by stereo PIV in one plane for all three velocity components. Averaged velocity fields have been calculated, as well as Reynolds-decomposed fluctuation vector fields. Conditioned root mean square (RMS) values of the turbulent fluctuations in terms of unburnt and burnt gas could be determined by making use of the information gained from a threshold setting procedure in the PIV raw images. Furthermore, several length scales were measured indirectly from PIV vector plots. In this context, all integral length scales being accessible with stereo PIV were computed separately for the burnt and unburnt regions and were compared to each other. It could be observed that all integral length scales increased in the burnt zone. Additionally, the conditioned Taylor and Kolmogorov lengths have been extracted from the PIV field data, derived either from the zero-radius curvature of the correlation function or from common turbulence theory relations.
机译:使用平面激光瑞利散射(PLRS)和立体粒子图像测速技术(立体声PIV)研究了本生型湍流贫甲烷/空气火焰的湍流和温度场。已经从PLRS测量中计算了时间平均反应进度变量图,以便为验证计算流体动力学(CFD)模型提供基础。对于所有三个速度分量,湍流的特征是在一个平面上具有立体PIV。已经计算了平均速度场以及雷诺分解的波动矢量场。可以通过利用从PIV原始图像中的阈值设置过程获得的信息来确定就未燃烧和已燃烧气体而言的湍流波动的条件均方根(RMS)值。此外,从PIV向量图间接测量了几个长度尺度。在这种情况下,对于燃烧区域和未燃烧区域,分别计算了立体声PIV可以访问的所有整数长度刻度,并将它们相互比较。可以观察到,在燃烧区,所有积分长度尺度都增加了。此外,已从PIV场数据中提取了条件泰勒长度和Kolmogorov长度,这些长度是从相关函数的零半径曲率或从常见的湍流理论关系得出的。

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