基于COMSOL的烟叶复烤干燥过程仿真
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(昆明理工大学机电工程学院,云南 昆明 650500)

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秦基伟,男,昆明理工大学在读硕士研究生。

通讯作者:

王立华(1974—),男,昆明理工大学教授,博士。E-mail:kmwanglihua@163.com

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云南省重大科技专项计划(编号:202002AD080001)


Simulation analysis of tobacco leaf redrying and drying process based on COMSOL
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(Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming, Yunan 650500, China)

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    摘要:

    目的:研究烟叶在复烤过程中的干燥收缩机制。方法:基于多孔介质理论和弹性理论,结合傅里叶定律和菲克定律实现烟叶干燥过程中热膨胀、吸湿膨胀和温度耦合过程的数值模拟。结果:烟叶在复烤过程中,最大应力出现在烟叶干燥3 min左右;干燥过程中水分应力远大于热应力;在低温慢烤过程中烟叶内部水分蒸发率较低,以至于烟叶收缩率不高;烟叶复烤过程中干燥阶段收缩率为10%,最大误差为3%。结论:水分含量是烟叶干燥收缩变形的主要影响因素。

    Abstract:

    Objective: To study the drying shrinkage mechanism of tobacco leaves during the redrying process. Methods: Based on the theory of porous media and elasticity, combined with Fouriers law and Fick's law, the numerical simulation of the thermal expansion, hygroscopic expansion and temperature coupling process in the tobacco leaf drying process was realized. Results: During the redrying process, the maximum stress occurred when the tobacco leaves were dried for about 3 minutes. The moisture stress during the drying process was much greater than the thermal stress; During the low-temperature slow-curing process, the internal moisture evaporation rate of the tobacco leaves was low, so that the shrinkage rate of the tobacco leaves was not high; The shrinkage rate in the drying stage during the redrying process of tobacco leaves was 10%, and the maximum error was 3%. Conclusion: The moisture content is the main influencing factor of the drying shrinkage and deformation of tobacco leaves.

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秦基伟,王立华,蒋维,等.基于COMSOL的烟叶复烤干燥过程仿真[J].食品与机械,2021,37(11):136-141.
QINJiwei, WANGLihua, JIANGWei, et al. Simulation analysis of tobacco leaf redrying and drying process based on COMSOL[J]. Food & Machinery,2021,37(11):136-141.

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  • 收稿日期:2021-07-23
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  • 在线发布日期: 2023-02-15
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