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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Effects of preferential concentration on direct radiation transmission in a turbulent duct flow
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Effects of preferential concentration on direct radiation transmission in a turbulent duct flow

机译:APS-流体动力学APS分部第70届年会-事件-湍流管道中优先浓度对直接辐射传输的影响

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Inertial particles in turbulent flows preferentially concentrate, giving rise to spatial and temporal fluctuations of particle number density that affect radiation transmission through the medium. Positive particle correlations enhance direct transmission when compared to the exponential attenuation predicted by the Beer's Law for randomly distributed particles. In the context of a particle based solar receiver, this work studies the effects of preferential concentration and optical depth on direct transmission through a particle laden turbulent duct flow. Time resolved measurements of transmission through the mixture were performed for various particle loadings and Reynolds numbers, thus varying particle correlation lengths, optical depth and concentration fluctuations. These measurements were made using a photodiode to record the transmission of a collimated laser beam along the wall bisector of the duct. A synchronized high-speed camera provided particle positions along most of the beam path. Average and fluctuating radiation transmission results are compared to predictions derived from the imaged number density fields and to simplified analytical models. Simplified models are able to capture the correct trends with varying loading and preferential concentration.
机译:湍流中的惯性粒子优先聚集,从而导致粒子数密度的时空波动,从而影响通过介质的辐射传输。与比尔定律预测的随机分布粒子的指数衰减相比,正粒子相关性增强了直接传输。在基于粒子的太阳能接收器的背景下,这项工作研究了优先浓度和光学深度对通过带有粒子的湍流管道流直接传输的影响。对各种颗粒载荷和雷诺数进行时间分辨的混合物透射率测量,从而改变了颗粒的相关长度,光学深度和浓度波动。使用光电二极管进行这些测量,以记录准直激光束沿管道壁等分线的透射率。同步的高速相机提供了沿大多数光束路径的粒子位置。将平均和波动的辐射传输结果与从成像的数密度场得出的预测结果和简化的分析模型进行比较。简化的模型能够在变化的负载和优先集中的情况下捕获正确的趋势。

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