首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of fluidization behavior of high density particle in spouted bed using CFD-DEM coupling method
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Investigation of fluidization behavior of high density particle in spouted bed using CFD-DEM coupling method

机译:用CFD-DEM耦合法研究喷头中高密度颗粒的流化行为

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摘要

CFD-DEM coupling simulation method is used to study the fluidization behavior of particle with different densities in the spouted bed. The simulation results show that the particle spouting behavior is incoherent and periodic in the stable spouting state. The cycle periods of the whole bed and single particle are obtained from particle trajectory and compared with experimental results. The relationships between the minimum spouting gas velocity, the steady pressure drop and the particle density are obtained. It can be found that the gas velocity range of stable spouting state expands when the particle density increases. The dual, single and multiple dominant frequencies are found in the stable spouting process of high density particle. Through detailed analysis on the mechanism of spouting dominant frequency, the flow pattern map with different superficial gas velocities and particle densities is given and can be divided into five regions: fixed bed with internal spouting, transitional stable spouting state with dual dominant frequency, main stable spouting state with single dominant frequency, transitional stable spouting state with multiple dominant frequency, and unstable spouting state. The stable spouting gas velocity is influenced by the particle density, while the dominant frequency of the particle spouting process will keep invariant even if the particle density increases, as long as U-g/U-ms is not changed, The influence of particle density on the particle residence time distribution in the spout region, which can be used to characterize the gas solid contact efficiency, is also discussed based on simulation results. (C) 2015 Elsevier B.V. All rights reserved.
机译:采用CFD-DEM耦合模拟方法研究了不同密度的颗粒在流化床中的流化行为。仿真结果表明,在稳定的喷头状态下,喷头行为是不连贯的,周期性的。从颗粒轨迹获得整个床和单个颗粒的循环周期,并将其与实验结果进行比较。得到最小喷射气体速度,稳定压降和颗粒密度之间的关系。可以发现,当颗粒密度增加时,稳定喷射状态的气体速度范围扩大。在高密度粒子的稳定喷射过程中发现了双重,单一和多个主频。通过详细分析喷动主频的机理,给出了不同表观气速和颗粒密度的流型图,可分为五个区域:内部喷动固定床,双主频过渡稳定喷动状态,主稳定。单主频的喷头状态,多主频的过渡稳定喷头状态和不稳定喷头状态。稳定的喷出气体速度受颗粒密度的影响,即使颗粒密度增加,只要不改变Ug / U-ms,颗粒喷射过程的主导频率仍将保持不变。基于模拟结果,还讨论了喷口区域中的颗粒停留时间分布,可用于表征气固接触效率。 (C)2015 Elsevier B.V.保留所有权利。

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