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Simulation of Seamless Capsule Drying Process Using a Coupled CFD and DEM Methods

机译:使用 CFD 和 DEM 耦合方法模拟无缝胶囊干燥过程

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© 2024, Turbomachinery Society of Japan. All rights reserved.To ensure proper preservation, seamless capsules must be completely dried, which is achieved through a process in the drum. However, it is difficult to observe the changes in the capsules during the drying process in real-time. To address this, FLUENT and DEM coupled calculations are utilized to simulate the heat and mass transfer of the capsules during drying. The results demonstrate that the coupled model accurately predicts the drying time of the capsules under certain conditions, capturing the movement and interaction of particles and flow field inside the drum. During the drying process, air is unable to effectively enter the drum, resulting in the ineffective formation of convection in the drying environment and reduced drying efficiency. Based on the simulation results, subsequent optimization of the movement of the capsules in the drum, design of the air inlet, and improvement of convective mass transfer efficiency can be achieved, leading to an optimized drying process through adjustments to the drying conditions.
机译:© 2024 年,日本涡轮机械学会。保留所有权利。为确保正确保存,无缝胶囊必须完全干燥,这是通过在滚筒中进行过程来实现的。然而,在干燥过程中很难实时观察胶囊的变化。为了解决这个问题,使用 FLUENT 和 DEM 耦合计算来模拟胶囊在干燥过程中的传热和传质。结果表明,耦合模型准确预测了胶囊在一定条件下的干燥时间,捕捉了颗粒和转鼓内流场的运动和相互作用。在干燥过程中,空气无法有效进入滚筒,导致干燥环境中无效形成对流,降低干燥效率。根据模拟结果,可以实现胶囊在滚筒中的运动、进气口设计和对流传质效率的后续优化,从而通过调整干燥条件来优化干燥过程。

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