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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >LES-DEM investigation of the solid transportation mechanism in a 3-D bubbling fluidized bed. Part I: hydrodynamics
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LES-DEM investigation of the solid transportation mechanism in a 3-D bubbling fluidized bed. Part I: hydrodynamics

机译:LES-DEM对3-D鼓泡流化床中固体输送机理的研究。第一部分:流体动力学

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Numerical simulation of the gas-solid flow in a three-dimensional bubbling fluidized bed is performed by means of computational fluid dynamics combined with discrete element method to investigate the solid transportation mechanism of the system. In the numerical model, gas motion is resolved in the framework of large eddy simulation, while solid phase is tracked with the discrete element method. General flow patterns of fluid phase and solid phase in both the macroscopic and microscopic views are explored to gain the insight of the interaction between bubbles and particles. Then, the time-averaged properties of solid phase are analyzed. The results indicate that a roll pair for the solid circulation can be observed. Meanwhile, vigorously lateral solid motion mainly concentrates in the regions near the bed inlet and bed surface. The vertical intensity of solid transportation is stronger than the lateral one, and the critical height of zero lateral solid flux can be used to identify the center of the roll pair. With the increase of the superficial velocity, the transportation intensity of solid phase is enhanced.
机译:利用三维流体动力学与离散元相结合的方法,对三维鼓泡流化床中的气固两相流进行了数值模拟,研究了系统的固体输运机理。在数值模型中,气体运动是在大涡模拟的框架内解决的,而固相则是用离散元方法跟踪的。在宏观和微观两个方面,研究了液相和固相的一般流动模式,以了解气泡和颗粒之间的相互作用。然后,分析固相的时间平均性质。结果表明可以观察到用于固体循环的辊对。同时,剧烈的横向固体运动主要集中在床入口和床表面附近的区域。固体运输的垂直强度要比横向运输强度强,并且可以将零横向运输通量的临界高度用于识别轧辊对的中心。随着表面速度的增加,固相的输送强度增加。

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