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Temperature statistics in a radiatively heated particle-laden turbulent square duct flow

机译:辐射加热的粒子加热湍流方形管道流动温度统计

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Radiation absorption by preferentially concentrated particles in a turbulent square duct flow is studied experimentally. The particle-laden flow is exposed to near-infrared radiation, and the gas phase temperature statistics are measured along the wall bisector of the duct. It is found that the instantaneous temperature fluctuations are comparable to the overall mean temperature rise. The temperature statistics at the duct centerline and near the wall are qualitatively different. The former reflects preferential concentration in isotropic flows while the latter displays evidence of particle clustering into streamwise elongated streaks. Comparison of the experimental data to a simplified heat transfer model suggests that the Lagrangian evolution of particle clusters and voids, and turbulent mixing in the vicinity of particle clusters, are important. This work was motivated by particle solar receiver technology, but the findings are also relevant to systems where there is localized heat release or mass transfer from disperse particles or droplets. It shows that obtaining Lagrangian histories of particle trajectories is an important next step towards understanding thermal transport phenomena in particle-laden turbulent flows.
机译:通过实验研究了在湍流方形管道中优先浓缩粒子的辐射吸收。粒子流动暴露于近红外辐射,并且沿着管道的壁分子测量气相温度统计。发现瞬时温度波动与总体平均温度升高相当。管道中心线和墙壁附近的温度统计是定性不同的。前者反映各向同性流动中的优先浓度,而后者显示颗粒聚集的证据进入流动的细长条纹。实验数据对简化的传热模型的比较表明,颗粒簇和空隙的拉格朗日演化以及颗粒簇附近的湍流混合,是重要的。这项工作是由粒子太阳能接收器技术的动机,但发现也与具有局部热释放或来自分散颗粒或液滴的质量传递的系统相关。它表明,获得粒子轨迹的拉格朗日历史是一个重要的下一步,了解粒子载荷湍流流动中的热传输现象。

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