Simulation of tempering drying of porous media based on COMSOL multi-physics field
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(1. Clean Energy Lab , College of Energy Storage Technology , Shandong University of Science and Technology , Qingdao , Shandong 266590 , China; 2. Zhongke Ruineng (Shandong ) Technology Co ., Ltd., Jinan , Shandong 250301 , China; 3. Shandong Haohan Seed Industry Technology Co ., Ltd., Jinan , Shandong 250101 , China)

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    Abstract:

    [[Objective ]] To investigate the variation laws of temperature and humidity fields during the tempering process.[[Methods ]] Using corn kernels and grain piles as porous media,perform multi -physics field coupling using the heat and moisture flow interface in the COMSOL Multiphysics heat transfer module.[[Results]] Five tempering and six drying processes reduced the relative humidity of corn kernels from 22.5% to 4.97%,and after two tempering and three drying processes,the average relative humidity of corn kernels decreased to 11%.The drying effect improved by 9.5% compared to no tempering drying.The same effect was obtained by the strategy of tempering at normal temperature with less drying time.[[Conclusion ]] The tempering strategy effectively improves he drying rate by reducing the moisture gradient,shortening the overall hot air drying time.However,the drying and slow fermentation times are increased.The application of ambient temperature ventilation slow fermentation strategies in the air -drying chamber can further reduce the number and duration of slow fermentation sessions required in the later stages of drying.

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刘丁通,刘泽钰,刘绍东,等.基于COMSOL多物理场的多孔介质缓苏干燥模拟[J].食品与机械英文版,2024,40(10):108-115.

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  • Received:March 18,2024
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  • Online: February 18,2025
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