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基于CFD-DEM的柔性生物质颗粒取向特性研究
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Investigation on Flexible Biomass Particle Orientation Characteristics Based on CFD-DEM
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    摘要:

    为解决柔性生物质颗粒在食品加工和生物能源制备等出现的取向无序性问题,设计了一种三角形沟槽通道.基于计算流体动力学-离散元方法(CFD-DEM),建立三角形沟槽通道内柔性颗粒运动的气固耦合模型.其中,采用双链黏结球模型表征柔性生物质颗粒.设计正交实验,研究气体速度、颗粒长度、通道倾斜角和沟槽角度对柔性颗粒取向的影响规律.结果表明:柔性颗粒取向角为0~10°的比例高达0.9;通道倾斜角β对颗粒取向有序性的影响最大,随着颗粒长度颗粒的增大,通道倾斜角和沟槽角度的减小,取向有序性增强.优化模型中,颗粒取向角为0~10°的比例为0.96,取向有序参数S为-1.911,颗粒取向与沟槽方向基本一致;颗粒运动平均速度为2.467 m·s-1.该成果为颗粒取向的研究提供了一定的理论依据.

    Abstract:

    To solve the orientation disorder of flexible biomass particles in food processing and bioenergy production, a triangular groove channel was designed. Based on the computational fluid dynamics-discrete element method (CFD-DEM), a gas-solid coupling model for flexible particle movement in a triangular grooved channel was established. Among them, the double-chain bonded sphere model was used to characterize the flexible biomass particles. Orthogonal experiments were designed to study the influence of gas velocity, particle length, channel inclination, and groove angle on the orientation of flexible particles. The results show that the proportion of flexible particles with an orientation angle of 0 to 10° is as high as 0.9; the channel inclination angle β has the greatest impact on the orderliness of particle orientation, and as the particle length increases, the channel inclination angle and groove angle decrease, but the orientation orderliness increases. In the optimized model, the proportion of particle orientation angles from 0 to 10° is 0.96, the orientation order parameter S is -1.911, and the particle orientation is generally consistent with the direction of the groove; the average velocity of particle movement is 2.467 m·s-1. This achievement provides a theoretical basis for the study of particle orientation.

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ZHOU Changjiang?,CHEN Yijie, CHEN Haikang, SU Jie, LIU Pijing.基于CFD-DEM的柔性生物质颗粒取向特性研究[J].湖南大学学报:自然科学版,2023,(10):212~222

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  • 在线发布日期: 2023-11-13
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