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首页> 外文期刊>AIChE Journal >Granular Pressure in a Liquid-Fluidized Bed as Revealed by Diffusing Wave Spectroscopy
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Granular Pressure in a Liquid-Fluidized Bed as Revealed by Diffusing Wave Spectroscopy

机译:扩散波谱显示的流化床中的颗粒压力

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The granular pressure and granular temperature underpin various models of granular flows while they are playing an increasing role in modeling of other phenomena in granular systems such as heat transfer, segregation, erosion, attrition, and aggregation. The development and validation of these theories demand experimental determination of these two quantities. Diffusing wave spectroscopy (DWS) is now an accepted technique for measurement of granular temperature in dense granular systems. Using granular temperature data obtained from DWS with the kinetic theory of granular flow, we have derived the granular pressure data for a liquid-fluidized bed. The determined variation of the mean bed granular pressure with mean bed solid volume fraction compares favorably with previously published experimental data and theoretical models of others. Where discrepancies do occur, they may be attributed to differences in particle inertia, suggesting further work on granular pressure models is required. Finally, we report the variation of the granular pressure with height above the distributor for several mean solids volume fractions.
机译:颗粒压力和颗粒温度是各种颗粒流动模型的基础,而颗粒流动和模型温度在颗粒系统中其他现象的建模(例如传热,分离,侵蚀,磨损和聚集)中发挥着越来越重要的作用。这些理论的发展和验证要求对这两个量进行实验确定。扩散波谱(DWS)现在是一种用于测量致密颗粒系统中颗粒温度的公认技术。使用从DWS获得的颗粒温度数据和颗粒流动动力学理论,我们得出了液体流化床的颗粒压力数据。确定的平均床颗粒压力随平均床固体体积分数的变化与以前发表的实验数据和其他理论模型相比具有优势。在确实出现差异的地方,它们可能是由于颗粒惯性的差异而引起的,这表明需要对颗粒压力模型进行进一步的研究。最后,我们报告了几个平均固体体积分数,颗粒压力随分布器上方高度的变化。

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